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Journal Abstract Search
145 related items for PubMed ID: 2674951
41. Destabilization of junctional ACh receptors by a reinnervating frog motor nerve. Aframian D, Grinnell AD. P R Health Sci J; 1988 Aug; 7(2):80-6. PubMed ID: 2847221 [Abstract] [Full Text] [Related]
42. Gradient of extrajunctional acetylcholine receptors early after denervation of mammalian muscle. Levitt-Gilmour TA, Salpeter MM. J Neurosci; 1986 Jun; 6(6):1606-12. PubMed ID: 3711998 [Abstract] [Full Text] [Related]
43. Changes in end-plate cholinesterase and axons during muscle degeneration and regeneration. Sadeh M, Stern LZ, Czyzewski K. J Anat; 1985 Jan; 140 ( Pt 1)(Pt 1):165-76. PubMed ID: 4066467 [Abstract] [Full Text] [Related]
44. Spatial Distribution of Motor Endplates and its Adaptive Change in Skeletal Muscle. Yin X, Yu T, Chen B, Xu J, Chen W, Qi Y, Zhang P, Li Y, Kou Y, Ma Y, Han N, Wan P, Luo Q, Zhu D, Jiang B. Theranostics; 2019 Jan; 9(3):734-746. PubMed ID: 30809305 [Abstract] [Full Text] [Related]
45. NEW MOTOR END-PLATES AND THEIR RELATIONSHIP TO MUSCLE FIBRE INJURY. GWYN DG, AITKEN JT. Nature; 1964 Aug 08; 203():651-2. PubMed ID: 14250987 [No Abstract] [Full Text] [Related]
46. Presence and colocalization of type-1 cannabinoid receptors with acetylcholine receptors in the motor end-plate of twitch skeletal muscle fibers in the frog. Trujillo X, Sánchez-Pastor E, Andrade F, Huerta M. J Membr Biol; 2014 Nov 08; 247(11):1199-205. PubMed ID: 25161032 [Abstract] [Full Text] [Related]
47. Hereditary motor endplate disease (med) of the mouse: observations on dissociated myogenic cells and their development in culture. Jockusch H, Burkart W, Burger MM. Cell Tissue Res; 1980 Nov 08; 207(2):241-8. PubMed ID: 7388917 [Abstract] [Full Text] [Related]
48. Effects of extracts of denervated muscles on the morphology of cultured muscle cells. Hooisma J, De Krijger J, De Groot DM, Magchielse T, Muijser H. Neurosci Lett; 1981 Feb 23; 22(1):47-50. PubMed ID: 7219890 [Abstract] [Full Text] [Related]
49. Tethering of vesicles to the Golgi by GMAP210 controls LAT delivery to the immune synapse. Zucchetti AE, Bataille L, Carpier JM, Dogniaux S, San Roman-Jouve M, Maurin M, Stuck MW, Rios RM, Baldari CT, Pazour GJ, Hivroz C. Nat Commun; 2019 Jun 28; 10(1):2864. PubMed ID: 31253807 [Abstract] [Full Text] [Related]
50. Serping1/C1 Inhibitor Affects Cortical Development in a Cell Autonomous and Non-cell Autonomous Manner. Gorelik A, Sapir T, Woodruff TM, Reiner O. Front Cell Neurosci; 2017 Jun 28; 11():169. PubMed ID: 28670268 [Abstract] [Full Text] [Related]
51. Amyotrophic lateral sclerosis and denervation alter sphingolipids and up-regulate glucosylceramide synthase. Henriques A, Croixmarie V, Priestman DA, Rosenbohm A, Dirrig-Grosch S, D'Ambra E, Huebecker M, Hussain G, Boursier-Neyret C, Echaniz-Laguna A, Ludolph AC, Platt FM, Walther B, Spedding M, Loeffler JP, Gonzalez De Aguilar JL. Hum Mol Genet; 2015 Dec 20; 24(25):7390-405. PubMed ID: 26483191 [Abstract] [Full Text] [Related]
52. Loss of a Clueless-dGRASP complex results in ER stress and blocks Integrin exit from the perinuclear endoplasmic reticulum in Drosophila larval muscle. Wang ZH, Rabouille C, Geisbrecht ER. Biol Open; 2015 Apr 10; 4(5):636-48. PubMed ID: 25862246 [Abstract] [Full Text] [Related]
53. The endosomal pathway and the Golgi complex are involved in the infectious bursal disease virus life cycle. Delgui LR, Rodríguez JF, Colombo MI. J Virol; 2013 Aug 10; 87(16):8993-9007. PubMed ID: 23741000 [Abstract] [Full Text] [Related]
54. pARIS-htt: an optimised expression platform to study huntingtin reveals functional domains required for vesicular trafficking. Pardo R, Molina-Calavita M, Poizat G, Keryer G, Humbert S, Saudou F. Mol Brain; 2010 Jun 01; 3():17. PubMed ID: 20515468 [Abstract] [Full Text] [Related]
55. Targeting of the 5-HT1A serotonin receptor to neuronal dendrites is mediated by Yif1B. Carrel D, Masson J, Al Awabdh S, Capra CB, Lenkei Z, Hamon M, Emerit MB, Darmon M. J Neurosci; 2008 Aug 06; 28(32):8063-73. PubMed ID: 18685031 [Abstract] [Full Text] [Related]
56. Hormonal control of the renal immune response and antibacterial host defense by arginine vasopressin. Chassin C, Hornef MW, Bens M, Lotz M, Goujon JM, Vimont S, Arlet G, Hertig A, Rondeau E, Vandewalle A. J Exp Med; 2007 Nov 26; 204(12):2837-52. PubMed ID: 17967904 [Abstract] [Full Text] [Related]
57. Analysis of de novo Golgi complex formation after enzyme-based inactivation. Jollivet F, Raposo G, Dimitrov A, Sougrat R, Goud B, Perez F. Mol Biol Cell; 2007 Nov 26; 18(11):4637-47. PubMed ID: 17855505 [Abstract] [Full Text] [Related]
58. The biogenesis of the Golgi ribbon: the roles of membrane input from the ER and of GM130. Marra P, Salvatore L, Mironov A, Di Campli A, Di Tullio G, Trucco A, Beznoussenko G, Mironov A, De Matteis MA. Mol Biol Cell; 2007 May 26; 18(5):1595-608. PubMed ID: 17314401 [Abstract] [Full Text] [Related]
59. A role for the Rab6A' GTPase in the inactivation of the Mad2-spindle checkpoint. Miserey-Lenkei S, Couëdel-Courteille A, Del Nery E, Bardin S, Piel M, Racine V, Sibarita JB, Perez F, Bornens M, Goud B. EMBO J; 2006 Jan 25; 25(2):278-89. PubMed ID: 16395330 [Abstract] [Full Text] [Related]
60. Nucleokinesis in tangentially migrating neurons comprises two alternating phases: forward migration of the Golgi/centrosome associated with centrosome splitting and myosin contraction at the rear. Bellion A, Baudoin JP, Alvarez C, Bornens M, Métin C. J Neurosci; 2005 Jun 15; 25(24):5691-9. PubMed ID: 15958735 [Abstract] [Full Text] [Related] Page: [Previous] [Next] [New Search]