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A monoclonal antibody (IN-1) which neutralizes neurite growth inhibitory proteins in the rat CNS recognizes antigens localized in CNS myelin. , Rubin BP, Dusart I, Schwab ME., J Neurocytol. April 1, 1994; 23 (4): 209-17.
CNS myelin and oligodendrocytes of the Xenopus spinal cord--but not optic nerve--are nonpermissive for axon growth. , Lang DM, Rubin BP, Schwab ME, Stuermer CA., J Neurosci. January 1, 1995; 15 (1 Pt 1): 99-109.
A p75( NTR) and Nogo receptor complex mediates repulsive signaling by myelin-associated glycoprotein. , Wong ST, Henley JR, Kanning KC, Huang KH, Bothwell M, Poo MM., Nat Neurosci. December 1, 2002; 5 (12): 1302-8.
Identification of two NOGO/ RTN4 genes and analysis of Nogo-A expression in Xenopus laevis. , Klinger M, Diekmann H, Heinz D, Hirsch C, Hannbeck von Hanwehr S, Petrausch B, Oertle T, Schwab ME, Stuermer CA., Mol Cell Neurosci. February 1, 2004; 25 (2): 205-16.
Inhibition of Nogo: a key strategy to increase regeneration, plasticity and functional recovery of the lesioned central nervous system. , Buchli AD, Schwab ME., Ann Med. January 1, 2005; 37 (8): 556-67.
The natural history of the myelin-derived nerve growth inhibitor Nogo-A. , Schweigreiter R., Neuron Glia Biol. May 1, 2008; 4 (2): 83-9.
The reticulon and DP1/Yop1p proteins form immobile oligomers in the tubular endoplasmic reticulum. , Shibata Y, Voss C, Rist JM, Hu J, Rapoport TA, Prinz WA, Voeltz GK., J Biol Chem. July 4, 2008; 283 (27): 18892-904.
ER membrane-bending proteins are necessary for de novo nuclear pore formation. , Dawson TR, Lazarus MD, Hetzer MW , Wente SR., J Cell Biol. March 9, 2009; 184 (5): 659-75.
Identification and characterization of alternative promoters of zebrafish Rtn-4/ Nogo genes in cultured cells and zebrafish embryos. , Chen YC , Wu BK, Chu CY, Cheng CH, Han HW, Chen GD, Lee MT, Hwang PP, Kawakami K, Chang CC , Huang CJ., Nucleic Acids Res. August 1, 2010; 38 (14): 4635-50.
Evolution of vertebrate central nervous system is accompanied by novel expression changes of duplicate genes. , Chen Y , Chen Y , Ding Y , Zhang Z , Wang W, Chen JY , Ueno N , Mao B ., J Genet Genomics. December 20, 2011; 38 (12): 577-84.
Nuclear size scaling during Xenopus early development contributes to midblastula transition timing. , Jevtić P, Levy DL ., Curr Biol. January 5, 2015; 25 (1): 45-52.
Cooperation of the ER-shaping proteins atlastin, lunapark, and reticulons to generate a tubular membrane network. , Wang S, Tukachinsky H, Romano FB, Rapoport TA., Elife. September 13, 2016; 5
Both Nuclear Size and DNA Amount Contribute to Midblastula Transition Timing in Xenopus laevis. , Jevtić P, Levy DL ., Sci Rep. August 11, 2017; 7 (1): 7908.