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    Corey Goodman, PhD

    TitleProfessor
    SchoolUCSF School of Medicine
    DepartmentAnatomy
    Address513 Parnassus Ave
    San Francisco CA 94143

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       Publications
      Publications listed below are automatically derived from MEDLINE/PubMed and other sources, which might result in incorrect or missing publications. Researchers can login to make corrections and additions, or contact us for help.
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      1. Szpara ML, Vranizan K, Tai YC, Goodman CS, Speed TP, Ngai J. Analysis of gene expression during neurite outgrowth and regeneration. BMC Neurosci. 2007; 8:100.
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      2. Guerrero G, Reiff DF, Rieff DF, Agarwal G, Ball RW, Borst A, Goodman CS, Isacoff EY. Heterogeneity in synaptic transmission along a Drosophila larval motor axon. Nat Neurosci. 2005 Sep; 8(9):1188-96.
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      3. Hu H, Li M, Labrador JP, McEwen J, Lai EC, Goodman CS, Bashaw GJ. Cross GTPase-activating protein (CrossGAP)/Vilse links the Roundabout receptor to Rac to regulate midline repulsion. Proc Natl Acad Sci U S A. 2005 Mar 22; 102(12):4613-8.
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      4. Long H, Sabatier C, Ma L, Plump A, Yuan W, Ornitz DM, Tamada A, Murakami F, Goodman CS, Tessier-Lavigne M. Conserved roles for Slit and Robo proteins in midline commissural axon guidance. Neuron. 2004 Apr 22; 42(2):213-23.
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      5. McCabe BD, Hom S, Aberle H, Fetter RD, Marques G, Haerry TE, Wan H, O'Connor MB, Goodman CS, Haghighi AP. Highwire regulates presynaptic BMP signaling essential for synaptic growth. Neuron. 2004 Mar 25; 41(6):891-905.
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      6. Babcock MC, Stowers RS, Leither J, Goodman CS, Pallanck LJ. A genetic screen for synaptic transmission mutants mapping to the right arm of chromosome 3 in Drosophila. Genetics. 2003 Sep; 165(1):171-83.
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      7. McCabe BD, Marqués G, Haghighi AP, Fetter RD, Crotty ML, Haerry TE, Goodman CS, O'Connor MB. The BMP homolog Gbb provides a retrograde signal that regulates synaptic growth at the Drosophila neuromuscular junction. Neuron. 2003 Jul 17; 39(2):241-54.
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      8. Haghighi AP, McCabe BD, Fetter RD, Palmer JE, Hom S, Goodman CS. Retrograde control of synaptic transmission by postsynaptic CaMKII at the Drosophila neuromuscular junction. Neuron. 2003 Jul 17; 39(2):255-67.
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      9. Godenschwege TA, Hu H, Shan-Crofts X, Goodman CS, Murphey RK. Bi-directional signaling by Semaphorin 1a during central synapse formation in Drosophila. Nat Neurosci. 2002 Dec; 5(12):1294-301.
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      10. Fradkin LG, Kamphorst JT, DiAntonio A, Goodman CS, Noordermeer JN. Genomewide analysis of the Drosophila tetraspanins reveals a subset with similar function in the formation of the embryonic synapse. Proc Natl Acad Sci U S A. 2002 Oct 15; 99(21):13663-8.
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      11. Godenschwege TA, Simpson JH, Shan X, Bashaw GJ, Goodman CS, Murphey RK. Ectopic expression in the giant fiber system of Drosophila reveals distinct roles for roundabout (Robo), Robo2, and Robo3 in dendritic guidance and synaptic connectivity. J Neurosci. 2002 Apr 15; 22(8):3117-29.
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      12. Aberle H, Haghighi AP, Fetter RD, McCabe BD, Magalhães TR, Goodman CS. wishful thinking encodes a BMP type II receptor that regulates synaptic growth in Drosophila. Neuron. 2002 Feb 14; 33(4):545-58.
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      13. Plump AS, Erskine L, Sabatier C, Brose K, Epstein CJ, Goodman CS, Mason CA, Tessier-Lavigne M. Slit1 and Slit2 cooperate to prevent premature midline crossing of retinal axons in the mouse visual system. Neuron. 2002 Jan 17; 33(2):219-32.
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      14. Whitford KL, Marillat V, Stein E, Goodman CS, Tessier-Lavigne M, Chédotal A, Ghosh A. Regulation of cortical dendrite development by Slit-Robo interactions. Neuron. 2002 Jan 3; 33(1):47-61.
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      15. Bashaw GJ, Hu H, Nobes CD, Goodman CS. A novel Dbl family RhoGEF promotes Rho-dependent axon attraction to the central nervous system midline in Drosophila and overcomes Robo repulsion. J Cell Biol. 2001 Dec 24; 155(7):1117-22.
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      16. Parnas D, Haghighi AP, Fetter RD, Kim SW, Goodman CS. Regulation of postsynaptic structure and protein localization by the Rho-type guanine nucleotide exchange factor dPix. Neuron. 2001 Nov 8; 32(3):415-24.
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      17. Pipes GC, Lin Q, Riley SE, Goodman CS. The Beat generation: a multigene family encoding IgSF proteins related to the Beat axon guidance molecule in Drosophila. Development. 2001 Nov; 128(22):4545-52.
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      18. Hu H, Marton TF, Goodman CS. Plexin B mediates axon guidance in Drosophila by simultaneously inhibiting active Rac and enhancing RhoA signaling. Neuron. 2001 Oct 11; 32(1):39-51.
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      19. Winberg ML, Tamagnone L, Bai J, Comoglio PM, Montell D, Goodman CS. The transmembrane protein Off-track associates with Plexins and functions downstream of Semaphorin signaling during axon guidance. Neuron. 2001 Oct 11; 32(1):53-62.
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      20. DiAntonio A, Haghighi AP, Portman SL, Lee JD, Amaranto AM, Goodman CS. Ubiquitination-dependent mechanisms regulate synaptic growth and function. Nature. 2001 Jul 26; 412(6845):449-52.
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      21. Kramer SG, Kidd T, Simpson JH, Goodman CS. Switching repulsion to attraction: changing responses to slit during transition in mesoderm migration. Science. 2001 Apr 27; 292(5517):737-40.
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      22. Sink H, Rehm EJ, Richstone L, Bulls YM, Goodman CS. sidestep encodes a target-derived attractant essential for motor axon guidance in Drosophila. Cell. 2001 Apr 6; 105(1):57-67.
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      23. Driessens MH, Hu H, Nobes CD, Self A, Jordens I, Goodman CS, Hall A. Plexin-B semaphorin receptors interact directly with active Rac and regulate the actin cytoskeleton by activating Rho. Curr Biol. 2001 Mar 6; 11(5):339-44.
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      24. Simpson JH, Bland KS, Fetter RD, Goodman CS. Short-range and long-range guidance by Slit and its Robo receptors: a combinatorial code of Robo receptors controls lateral position. Cell. 2000 Dec 22; 103(7):1019-32.
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      25. Simpson JH, Kidd T, Bland KS, Goodman CS. Short-range and long-range guidance by slit and its Robo receptors. Robo and Robo2 play distinct roles in midline guidance. Neuron. 2000 Dec; 28(3):753-66.
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      26. Erskine L, Williams SE, Brose K, Kidd T, Rachel RA, Goodman CS, Tessier-Lavigne M, Mason CA. Retinal ganglion cell axon guidance in the mouse optic chiasm: expression and function of robos and slits. J Neurosci. 2000 Jul 1; 20(13):4975-82.
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      27. Bashaw GJ, Kidd T, Murray D, Pawson T, Goodman CS. Repulsive axon guidance: Abelson and Enabled play opposing roles downstream of the roundabout receptor. Cell. 2000 Jun 23; 101(7):703-15.
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      28. Wan HI, DiAntonio A, Fetter RD, Bergstrom K, Strauss R, Goodman CS. Highwire regulates synaptic growth in Drosophila. Neuron. 2000 May; 26(2):313-29.
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      29. Marek KW, Ng N, Fetter R, Smolik S, Goodman CS, Davis GW. A genetic analysis of synaptic development: pre- and postsynaptic dCBP control transmitter release at the Drosophila NMJ. Neuron. 2000 Mar; 25(3):537-47.
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      30. Tessier-Lavigne M, Goodman CS. Perspectives: neurobiology. Regeneration in the Nogo zone. Science. 2000 Feb 4; 287(5454):813-4.
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      31. Tamagnone L, Artigiani S, Chen H, He Z, Ming GI, Song H, Chedotal A, Winberg ML, Goodman CS, Poo M, Tessier-Lavigne M, Comoglio PM. Plexins are a large family of receptors for transmembrane, secreted, and GPI-anchored semaphorins in vertebrates. Cell. 1999 Oct 1; 99(1):71-80.
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      32. Bashaw GJ, Goodman CS. Chimeric axon guidance receptors: the cytoplasmic domains of slit and netrin receptors specify attraction versus repulsion. Cell. 1999 Jun 25; 97(7):917-26.
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      33. DiAntonio A, Petersen SA, Heckmann M, Goodman CS. Glutamate receptor expression regulates quantal size and quantal content at the Drosophila neuromuscular junction. J Neurosci. 1999 Apr 15; 19(8):3023-32.
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      34. Zito K, Parnas D, Fetter RD, Isacoff EY, Goodman CS. Watching a synapse grow: noninvasive confocal imaging of synaptic growth in Drosophila. Neuron. 1999 Apr; 22(4):719-29.
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      35. Granderath S, Stollewerk A, Greig S, Goodman CS, O'Kane CJ, Klämbt C. loco encodes an RGS protein required for Drosophila glial differentiation. Development. 1999 Apr; 126(8):1781-91.
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      36. Brose K, Bland KS, Wang KH, Arnott D, Henzel W, Goodman CS, Tessier-Lavigne M, Kidd T. Slit proteins bind Robo receptors and have an evolutionarily conserved role in repulsive axon guidance. Cell. 1999 Mar 19; 96(6):795-806.
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      37. Wang KH, Brose K, Arnott D, Kidd T, Goodman CS, Henzel W, Tessier-Lavigne M. Biochemical purification of a mammalian slit protein as a positive regulator of sensory axon elongation and branching. Cell. 1999 Mar 19; 96(6):771-84.
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      38. Kidd T, Bland KS, Goodman CS. Slit is the midline repellent for the robo receptor in Drosophila. Cell. 1999 Mar 19; 96(6):785-94.
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      39. Nguyen Ba-Charvet KT, Brose K, Marillat V, Kidd T, Goodman CS, Tessier-Lavigne M, Sotelo C, Chédotal A. Slit2-Mediated chemorepulsion and collapse of developing forebrain axons. Neuron. 1999 Mar; 22(3):463-73.
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      40. Wills Z, Marr L, Zinn K, Goodman CS, Van Vactor D. Profilin and the Abl tyrosine kinase are required for motor axon outgrowth in the Drosophila embryo. Neuron. 1999 Feb; 22(2):291-9.
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      41. Kikuchi K, Chédotal A, Hanafusa H, Ujimasa Y, de Castro F, Goodman CS, Kimura T. Cloning and characterization of a novel class VI semaphorin, semaphorin Y. Mol Cell Neurosci. 1999 Jan; 13(1):9-23.
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      42. Winberg ML, Noordermeer JN, Tamagnone L, Comoglio PM, Spriggs MK, Tessier-Lavigne M, Goodman CS. Plexin A is a neuronal semaphorin receptor that controls axon guidance. Cell. 1998 Dec 23; 95(7):903-16.
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      43. Chédotal A, Del Rio JA, Ruiz M, He Z, Borrell V, de Castro F, Ezan F, Goodman CS, Tessier-Lavigne M, Sotelo C, Soriano E. Semaphorins III and IV repel hippocampal axons via two distinct receptors. Development. 1998 Nov; 125(21):4313-23.
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      44. Noordermeer JN, Kopczynski CC, Fetter RD, Bland KS, Chen WY, Goodman CS. Wrapper, a novel member of the Ig superfamily, is expressed by midline glia and is required for them to ensheath commissural axons in Drosophila. Neuron. 1998 Nov; 21(5):991-1001.
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      45. Kim J, Jones BW, Zock C, Chen Z, Wang H, Goodman CS, Anderson DJ. Isolation and characterization of mammalian homologs of the Drosophila gene glial cells missing. Proc Natl Acad Sci U S A. 1998 Oct 13; 95(21):12364-9.
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      46. Kopczynski CC, Noordermeer JN, Serano TL, Chen WY, Pendleton JD, Lewis S, Goodman CS, Rubin GM. A high throughput screen to identify secreted and transmembrane proteins involved in Drosophila embryogenesis. Proc Natl Acad Sci U S A. 1998 Aug 18; 95(17):9973-8.
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      47. Catalano SM, Messersmith EK, Goodman CS, Shatz CJ, Chédotal A. Many major CNS axon projections develop normally in the absence of semaphorin III. Mol Cell Neurosci. 1998 Jul; 11(4):173-82.
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      48. Winberg ML, Mitchell KJ, Goodman CS. Genetic analysis of the mechanisms controlling target selection: complementary and combinatorial functions of netrins, semaphorins, and IgCAMs. Cell. 1998 May 15; 93(4):581-91.
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      49. Davis GW, Goodman CS. Synapse-specific control of synaptic efficacy at the terminals of a single neuron. Nature. 1998 Mar 5; 392(6671):82-6.
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      50. Davis GW, Goodman CS. Genetic analysis of synaptic development and plasticity: homeostatic regulation of synaptic efficacy. Curr Opin Neurobiol. 1998 Feb; 8(1):149-56.
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      51. Davis GW, DiAntonio A, Petersen SA, Goodman CS. Postsynaptic PKA controls quantal size and reveals a retrograde signal that regulates presynaptic transmitter release in Drosophila. Neuron. 1998 Feb; 20(2):305-15.
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      52. Kidd T, Brose K, Mitchell KJ, Fetter RD, Tessier-Lavigne M, Goodman CS, Tear G. Roundabout controls axon crossing of the CNS midline and defines a novel subfamily of evolutionarily conserved guidance receptors. Cell. 1998 Jan 23; 92(2):205-15.
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      53. Kidd T, Russell C, Goodman CS, Tear G. Dosage-sensitive and complementary functions of roundabout and commissureless control axon crossing of the CNS midline. Neuron. 1998 Jan; 20(1):25-33.
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      54. Petersen SA, Fetter RD, Noordermeer JN, Goodman CS, DiAntonio A. Genetic analysis of glutamate receptors in Drosophila reveals a retrograde signal regulating presynaptic transmitter release. Neuron. 1997 Dec; 19(6):1237-48.
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      55. Zito K, Fetter RD, Goodman CS, Isacoff EY. Synaptic clustering of Fascilin II and Shaker: essential targeting sequences and role of Dlg. Neuron. 1997 Nov; 19(5):1007-16.
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      56. Davis GW, Schuster CM, Goodman CS. Genetic analysis of the mechanisms controlling target selection: target-derived Fasciclin II regulates the pattern of synapse formation. Neuron. 1997 Sep; 19(3):561-73.
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      57. Chen H, Chédotal A, He Z, Goodman CS, Tessier-Lavigne M. Neuropilin-2, a novel member of the neuropilin family, is a high affinity receptor for the semaphorins Sema E and Sema IV but not Sema III. Neuron. 1997 Sep; 19(3):547-59.
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      58. Doberstein SK, Fetter RD, Mehta AY, Goodman CS. Genetic analysis of myoblast fusion: blown fuse is required for progression beyond the prefusion complex. J Cell Biol. 1997 Mar 24; 136(6):1249-61.
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      59. Goodman CS, Davis GW, Zito K. The many faces of fasciclin II: Genetic analysis reveals multiple roles for a cell adhesion molecule during the generation of neuronal specificity. Cold Spring Harb Symp Quant Biol. 1997; 62:479-91.
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      60. Fambrough D, Goodman CS. The Drosophila beaten path gene encodes a novel secreted protein that regulates defasciculation at motor axon choice points. Cell. 1996 Dec 13; 87(6):1049-58.
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      61. Tessier-Lavigne M, Goodman CS. The molecular biology of axon guidance. Science. 1996 Nov 15; 274(5290):1123-33.
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      62. Fambrough D, Pan D, Rubin GM, Goodman CS. The cell surface metalloprotease/disintegrin Kuzbanian is required for axonal extension in Drosophila. Proc Natl Acad Sci U S A. 1996 Nov 12; 93(23):13233-8.
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      63. Kolodziej PA, Timpe LC, Mitchell KJ, Fried SR, Goodman CS, Jan LY, Jan YN. frazzled encodes a Drosophila member of the DCC immunoglobulin subfamily and is required for CNS and motor axon guidance. Cell. 1996 Oct 18; 87(2):197-204.
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      64. Schuster CM, Davis GW, Fetter RD, Goodman CS. Genetic dissection of structural and functional components of synaptic plasticity. I. Fasciclin II controls synaptic stabilization and growth. Neuron. 1996 Oct; 17(4):641-54.
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      65. Schuster CM, Davis GW, Fetter RD, Goodman CS. Genetic dissection of structural and functional components of synaptic plasticity. II. Fasciclin II controls presynaptic structural plasticity. Neuron. 1996 Oct; 17(4):655-67.
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      66. Davis GW, Schuster CM, Goodman CS. Genetic dissection of structural and functional components of synaptic plasticity. III. CREB is necessary for presynaptic functional plasticity. Neuron. 1996 Oct; 17(4):669-79.
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      67. García-Alonso L, Fetter RD, Goodman CS. Genetic analysis of Laminin A in Drosophila: extracellular matrix containing laminin A is required for ocellar axon pathfinding. Development. 1996 Sep; 122(9):2611-21.
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      68. Mitchell KJ, Doyle JL, Serafini T, Kennedy TE, Tessier-Lavigne M, Goodman CS, Dickson BJ. Genetic analysis of Netrin genes in Drosophila: Netrins guide CNS commissural axons and peripheral motor axons. Neuron. 1996 Aug; 17(2):203-15.
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      69. Stewart BA, Schuster CM, Goodman CS, Atwood HL. Homeostasis of synaptic transmission in Drosophila with genetically altered nerve terminal morphology. J Neurosci. 1996 Jun 15; 16(12):3877-86.
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      70. Kopczynski CC, Davis GW, Goodman CS. A neural tetraspanin, encoded by late bloomer, that facilitates synapse formation. Science. 1996 Mar 29; 271(5257):1867-70.
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      71. Tear G, Harris R, Sutaria S, Kilomanski K, Goodman CS, Seeger MA. commissureless controls growth cone guidance across the CNS midline in Drosophila and encodes a novel membrane protein. Neuron. 1996 Mar; 16(3):501-14.
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      72. Tiemeyer M, Goodman CS. Gliolectin is a novel carbohydrate-binding protein expressed by a subset of glia in the embryonic Drosophila nervous system. Development. 1996 Mar; 122(3):925-36.
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      73. Krueger NX, Van Vactor D, Wan HI, Gelbart WM, Goodman CS, Saito H. The transmembrane tyrosine phosphatase DLAR controls motor axon guidance in Drosophila. Cell. 1996 Feb 23; 84(4):611-22.
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      74. Goodman CS. Mechanisms and molecules that control growth cone guidance. Annu Rev Neurosci. 1996; 19:341-77.
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      75. Hayward DC, Patel NH, Rehm EJ, Goodman CS, Ball EE. Sequence and expression of grasshopper antennapedia: comparison to Drosophila. Dev Biol. 1995 Dec; 172(2):452-65.
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      76. Hu S, Fambrough D, Atashi JR, Goodman CS, Crews ST. The Drosophila abrupt gene encodes a BTB-zinc finger regulatory protein that controls the specificity of neuromuscular connections. Genes Dev. 1995 Dec 1; 9(23):2936-48.
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      77. García-Alonso L, VanBerkum MF, Grenningloh G, Schuster C, Goodman CS. Fasciclin II controls proneural gene expression in Drosophila. Proc Natl Acad Sci U S A. 1995 Nov 7; 92(23):10501-5.
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      78. Spana EP, Kopczynski C, Goodman CS, Doe CQ. Asymmetric localization of numb autonomously determines sibling neuron identity in the Drosophila CNS. Development. 1995 Nov; 121(11):3489-94.
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      79. Jones BW, Fetter RD, Tear G, Goodman CS. glial cells missing: a genetic switch that controls glial versus neuronal fate. Cell. 1995 Sep 22; 82(6):1013-23.
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      80. Auld VJ, Fetter RD, Broadie K, Goodman CS. Gliotactin, a novel transmembrane protein on peripheral glia, is required to form the blood-nerve barrier in Drosophila. Cell. 1995 Jun 2; 81(5):757-67.
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      81. Matthes DJ, Sink H, Kolodkin AL, Goodman CS. Semaphorin II can function as a selective inhibitor of specific synaptic arborizations. Cell. 1995 May 19; 81(4):631-9.
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      82. Messersmith EK, Leonardo ED, Shatz CJ, Tessier-Lavigne M, Goodman CS, Kolodkin AL. Semaphorin III can function as a selective chemorepellent to pattern sensory projections in the spinal cord. Neuron. 1995 May; 14(5):949-59.
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      83. Lin DM, Auld VJ, Goodman CS. Targeted neuronal cell ablation in the Drosophila embryo: pathfinding by follower growth cones in the absence of pioneers. Neuron. 1995 Apr; 14(4):707-15.
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      84. VanBerkum MF, Goodman CS. Targeted disruption of Ca(2+)-calmodulin signaling in Drosophila growth cones leads to stalls in axon extension and errors in axon guidance. Neuron. 1995 Jan; 14(1):43-56.
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      85. Lin DM, Fetter RD, Kopczynski C, Grenningloh G, Goodman CS. Genetic analysis of Fasciclin II in Drosophila: defasciculation, refasciculation, and altered fasciculation. Neuron. 1994 Nov; 13(5):1055-69.
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      86. Nose A, Takeichi M, Goodman CS. Ectopic expression of connectin reveals a repulsive function during growth cone guidance and synapse formation. Neuron. 1994 Sep; 13(3):525-39.
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      87. Lin DM, Goodman CS. Ectopic and increased expression of Fasciclin II alters motoneuron growth cone guidance. Neuron. 1994 Sep; 13(3):507-23.
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      88. Goodman CS. The likeness of being: phylogenetically conserved molecular mechanisms of growth cone guidance. Cell. 1994 Aug 12; 78(3):353-6.
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      89. Kolodkin AL, Pickup AT, Lin DM, Goodman CS, Banerjee U. Characterization of Star and its interactions with sevenless and EGF receptor during photoreceptor cell development in Drosophila. Development. 1994 Jul; 120(7):1731-45.
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      90. Kolodkin AL, Matthes DJ, Goodman CS. The semaphorin genes encode a family of transmembrane and secreted growth cone guidance molecules. Cell. 1993 Dec 31; 75(7):1389-99.
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      91. Hiromi Y, Mlodzik M, West SR, Rubin GM, Goodman CS. Ectopic expression of seven-up causes cell fate changes during ommatidial assembly. Development. 1993 Aug; 118(4):1123-35.
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      92. Vactor DV, Sink H, Fambrough D, Tsoo R, Goodman CS. Genes that control neuromuscular specificity in Drosophila. Cell. 1993 Jun 18; 73(6):1137-53.
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      93. Henchcliffe C, García-Alonso L, Tang J, Goodman CS. Genetic analysis of laminin A reveals diverse functions during morphogenesis in Drosophila. Development. 1993 Jun; 118(2):325-37.
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      94. Seeger M, Tear G, Ferres-Marco D, Goodman CS. Mutations affecting growth cone guidance in Drosophila: genes necessary for guidance toward or away from the midline. Neuron. 1993 Mar; 10(3):409-26.
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      95. Goodman CS, Shatz CJ. Developmental mechanisms that generate precise patterns of neuronal connectivity. Cell. 1993 Jan; 72 Suppl:77-98.
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      96. Tear G, Seeger M, Goodman CS. To cross or not to cross: a genetic analysis of guidance at the midline. Perspect Dev Neurobiol. 1993; 1(4):183-94.
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      97. Singer MA, Hortsch M, Goodman CS, Bentley D. Annulin, a protein expressed at limb segment boundaries in the grasshopper embryo, is homologous to protein cross-linking transglutaminases. Dev Biol. 1992 Nov; 154(1):143-59.
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      98. Kolodkin AL, Matthes DJ, O'Connor TP, Patel NH, Admon A, Bentley D, Goodman CS. Fasciclin IV: sequence, expression, and function during growth cone guidance in the grasshopper embryo. Neuron. 1992 Nov; 9(5):831-45.
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      99. Nose A, Mahajan VB, Goodman CS. Connectin: a homophilic cell adhesion molecule expressed on a subset of muscles and the motoneurons that innervate them in Drosophila. Cell. 1992 Aug 21; 70(4):553-67.
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      100. Freeman M, Klämbt C, Goodman CS, Rubin GM. The argos gene encodes a diffusible factor that regulates cell fate decisions in the Drosophila eye. Cell. 1992 Jun 12; 69(6):963-75.
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      101. Patel NH, Ball EE, Goodman CS. Changing role of even-skipped during the evolution of insect pattern formation. Nature. 1992 May 28; 357(6376):339-42.
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      102. McAllister L, Goodman CS, Zinn K. Dynamic expression of the cell adhesion molecule fasciclin I during embryonic development in Drosophila. Development. 1992 May; 115(1):267-76.
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      103. Mlodzik M, Hiromi Y, Goodman CS, Rubin GM. The presumptive R7 cell of the developing Drosophila eye receives positional information independent of sevenless, boss and sina. Mech Dev. 1992 Mar; 37(1-2):37-42.
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      104. Grenningloh G, Goodman CS. Pathway recognition by neuronal growth cones: genetic analysis of neural cell adhesion molecules in Drosophila. Curr Opin Neurobiol. 1992 Feb; 2(1):42-7.
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      105. Nose A, Van Vactor D, Auld V, Goodman CS. Development of neuromuscular specificity in Drosophila. Cold Spring Harb Symp Quant Biol. 1992; 57:441-9.
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      106. Mahoney PA, Weber U, Onofrechuk P, Biessmann H, Bryant PJ, Goodman CS. The fat tumor suppressor gene in Drosophila encodes a novel member of the cadherin gene superfamily. Cell. 1991 Nov 29; 67(5):853-68.
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      107. Grenningloh G, Rehm EJ, Goodman CS. Genetic analysis of growth cone guidance in Drosophila: fasciclin II functions as a neuronal recognition molecule. Cell. 1991 Oct 4; 67(1):45-57.
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      108. Klämbt C, Jacobs JR, Goodman CS. The midline of the Drosophila central nervous system: a model for the genetic analysis of cell fate, cell migration, and growth cone guidance. Cell. 1991 Feb 22; 64(4):801-15.
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      109. Ball EE, Rehm EJ, Goodman CS. Cloning of a grasshopper cDNA coding for a protein homologous to the A1, A2/B1 proteins of mammalian hnRNP. Nucleic Acids Res. 1991 Jan 25; 19(2):397.
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      110. Klämbt C, Goodman CS. Role of the midline glia and neurons in the formation of the axon commissures in the central nervous system of the Drosophila embryo. Ann N Y Acad Sci. 1991; 633:142-59.
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      111. Hortsch M, Goodman CS. Cell and substrate adhesion molecules in Drosophila. Annu Rev Cell Biol. 1991; 7:505-57.
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      112. Klämbt C, Goodman CS. The diversity and pattern of glia during axon pathway formation in the Drosophila embryo. Glia. 1991; 4(2):205-13.
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      113. Rothberg JM, Jacobs JR, Goodman CS, Artavanis-Tsakonas S. slit: an extracellular protein necessary for development of midline glia and commissural axon pathways contains both EGF and LRR domains. Genes Dev. 1990 Dec; 4(12A):2169-87.
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      114. Hortsch M, Patel NH, Bieber AJ, Traquina ZR, Goodman CS. Drosophila neurotactin, a surface glycoprotein with homology to serine esterases, is dynamically expressed during embryogenesis. Development. 1990 Dec; 110(4):1327-40.
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      115. Hortsch M, Goodman CS. Drosophila fasciclin I, a neural cell adhesion molecule, has a phosphatidylinositol lipid membrane anchor that is developmentally regulated. J Biol Chem. 1990 Sep 5; 265(25):15104-9.
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      116. Elkins T, Hortsch M, Bieber AJ, Snow PM, Goodman CS. Drosophila fasciclin I is a novel homophilic adhesion molecule that along with fasciclin III can mediate cell sorting. J Cell Biol. 1990 May; 110(5):1825-32.
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      117. Hortsch M, Bieber AJ, Patel NH, Goodman CS. Differential splicing generates a nervous system-specific form of Drosophila neuroglian. Neuron. 1990 May; 4(5):697-709.
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      118. Elkins T, Zinn K, McAllister L, Hoffmann FM, Goodman CS. Genetic analysis of a Drosophila neural cell adhesion molecule: interaction of fasciclin I and Abelson tyrosine kinase mutations. Cell. 1990 Feb 23; 60(4):565-75.
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      119. Mlodzik M, Hiromi Y, Weber U, Goodman CS, Rubin GM. The Drosophila seven-up gene, a member of the steroid receptor gene superfamily, controls photoreceptor cell fates. Cell. 1990 Jan 26; 60(2):211-24.
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      120. Grenningloh G, Bieber AJ, Rehm EJ, Snow PM, Traquina ZR, Hortsch M, Patel NH, Goodman CS. Molecular genetics of neuronal recognition in Drosophila: evolution and function of immunoglobulin superfamily cell adhesion molecules. Cold Spring Harb Symp Quant Biol. 1990; 55:327-40.
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      121. Bieber AJ, Snow PM, Hortsch M, Patel NH, Jacobs JR, Traquina ZR, Schilling J, Goodman CS. Drosophila neuroglian: a member of the immunoglobulin superfamily with extensive homology to the vertebrate neural adhesion molecule L1. Cell. 1989 Nov 3; 59(3):447-60.
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      122. Montell DJ, Goodman CS. Drosophila laminin: sequence of B2 subunit and expression of all three subunits during embryogenesis. J Cell Biol. 1989 Nov; 109(5):2441-53.
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      123. Snow PM, Bieber AJ, Goodman CS. Fasciclin III: a novel homophilic adhesion molecule in Drosophila. Cell. 1989 Oct 20; 59(2):313-23.
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      124. Patel NH, Kornberg TB, Goodman CS. Expression of engrailed during segmentation in grasshopper and crayfish. Development. 1989 Oct; 107(2):201-12.
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      125. Patel NH, Martin-Blanco E, Coleman KG, Poole SJ, Ellis MC, Kornberg TB, Goodman CS. Expression of engrailed proteins in arthropods, annelids, and chordates. Cell. 1989 Sep 8; 58(5):955-68.
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      126. Jacobs JR, Goodman CS. Embryonic development of axon pathways in the Drosophila CNS. I. A glial scaffold appears before the first growth cones. J Neurosci. 1989 Jul; 9(7):2402-11.
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      127. Jacobs JR, Goodman CS. Embryonic development of axon pathways in the Drosophila CNS. II. Behavior of pioneer growth cones. J Neurosci. 1989 Jul; 9(7):2412-22.
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      128. Patel NH, Schafer B, Goodman CS, Holmgren R. The role of segment polarity genes during Drosophila neurogenesis. Genes Dev. 1989 Jun; 3(6):890-904.
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      129. Jacobs JR, Hiromi Y, Patel NH, Goodman CS. Lineage, migration, and morphogenesis of longitudinal glia in the Drosophila CNS as revealed by a molecular lineage marker. Neuron. 1989 Jun; 2(6):1625-31.
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      130. Harrelson AL, Goodman CS. Growth cone guidance in insects: fasciclin II is a member of the immunoglobulin superfamily. Science. 1988 Nov 4; 242(4879):700-8.
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      131. Snow PM, Zinn K, Harrelson AL, McAllister L, Schilling J, Bastiani MJ, Makk G, Goodman CS. Characterization and cloning of fasciclin I and fasciclin II glycoproteins in the grasshopper. Proc Natl Acad Sci U S A. 1988 Jul; 85(14):5291-5.
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      132. Montell DJ, Goodman CS. Drosophila substrate adhesion molecule: sequence of laminin B1 chain reveals domains of homology with mouse. Cell. 1988 May 6; 53(3):463-73.
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      133. Crews ST, Thomas JB, Goodman CS. The Drosophila single-minded gene encodes a nuclear protein with sequence similarity to the per gene product. Cell. 1988 Jan 15; 52(1):143-51.
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      134. Doe CQ, Hiromi Y, Gehring WJ, Goodman CS. Expression and function of the segmentation gene fushi tarazu during Drosophila neurogenesis. Science. 1988 Jan 8; 239(4836):170-5.
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      135. Snow PM, Patel NH, Harrelson AL, Goodman CS. Neural-specific carbohydrate moiety shared by many surface glycoproteins in Drosophila and grasshopper embryos. J Neurosci. 1987 Dec; 7(12):4137-44.
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      136. Patel NH, Snow PM, Goodman CS. Characterization and cloning of fasciclin III: a glycoprotein expressed on a subset of neurons and axon pathways in Drosophila. Cell. 1987 Mar 27; 48(6):975-88.
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      137. Bastiani MJ, du Lac S, Goodman CS. Guidance of neuronal growth cones in the grasshopper embryo. I. Recognition of a specific axonal pathway by the pCC neuron. J Neurosci. 1986 Dec; 6(12):3518-31.
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      138. Raper JA, Bastiani MJ, Goodman CS. Pathfinding by neuronal growth cones in grasshopper embryos. IV. The effects of ablating the A and P axons upon the behavior of the G growth cone. J Neurosci. 1984 Sep; 4(9):2329-45.
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