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Fukutin-related protein alters the deposition of laminin in the eye and brainAckroyd, M. R., Whitmore, C., Prior, S., Kaluarachchi, M., Nikolic, M., Mayer, U., Muntoni, F. & Brown, S. C. 7 Sep 2011 In : Journal of Neuroscience. 31, 36, p. 12927-12935 9 p. Schizophrenia is associated with dysregulation of a Cdk5 activator that regulates synaptic protein expression and cognitionEngmann, O., Hortobágyi, T., Pidsley, R., Troakes, C., Bernstein, H-G., Kreutz, M. R., Mill, J., Nikolic, M. & Giese, K. P. Aug 2011 In : Brain. 134, 8, p. 2408-2421 14 p. Novel markers reveal subpopulations of subplate neurons in the murine cerebral cortexHoerder-Suabedissen, A., Wang, W. Z., Lee, S., Paulsen, O., Molnár, Z., Davies, K. E., Goffinet, A. M., Rakić, S., Parnavelas, J., Reim, K., Nicolić, M. & Nikolic, M. 1 Aug 2009 In : Cerebral Cortex. 19, 8, p. 1738-1750 13 p. The p21-activated kinase is required for neuronal migration in the cerebral cortexCauseret, F., Terao, M., Jacobs, T., Nishimura, Y. V., Yanagawa, Y., Obata, K., Hoshino, M. & Nikolic, M. 1 Apr 2009 In : Cerebral Cortex. 19, 4, p. 861-875 15 p. Cortical interneurons require p35/Cdk5 for their migration and laminar organizationRakić, S., Yanagawa, Y., Obata, K., Faux, C., Parnavelas, J. G. & Nikolic, M. 2009 In : Cerebral Cortex. 19, 8, p. 1857-69 13 p. The Pak1 kinase: an important regulator of neuronal morphology and function in the developing forebrainNikolic, M. Jun 2008 In : Molecular Neurobiology. 37, 2-3, p. 187-202 16 p. Neurabin-I is phosphorylated by Cdk5: Implications for neuronal morphogenesis and cortical migrationCauseret, F., Jacobs, T., Terao, M., Heath, O., Hoshino, M. & Nikolic, M. 1 Nov 2007 In : Molecular Biology of the Cell. 18, 11, p. 4327-4342 16 p. Role of p35/Cdk5 in preplate splitting in the developing cerebral cortexRakić, S., Davis, C., Molnár, Z., Nikolic, M. & Parnavelas, J. G. 2006 In : Cerebral Cortex. 16, Suppl 1, p. i35-i45 The molecular mystery of neuronal migration: FAK and Cdk5Nikolic, M. 2004 In : Trends in Cell Biology. 14, 1, p. 1-5 5 p. Pak1 and its T212 phosphorylated form accumulate in neurones and epithelial cells of the developing rodentZhong, J. L., Banerjee, M. D. & Nikolic, M. 1 Sep 2003 In : Developmental Dynamics. 228, 1, p. 121-127 7 p. Pak1 phosphorylation on T212 affects microtubules in cells undergoing mitosisBanerjee, M., Worth, D., Prowse, D. M. & Nikolic, M. 23 Jul 2002 In : Current Biology. 12, 14, p. 1233-1239 7 p. Phosphorylation of Pak1 by the p35/Cdk5 Kinase Affects Neuronal MorphologyRashid, T., Banerjee, M. & Nikolic, M. 28 Dec 2001 In : Journal of Biological Chemistry. 276, 52, p. 49043-49052 10 p.

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