Nick Harden

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"Nick Harden"
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Vlachos S, Jangam S, Conder R, et al. (2015) A Pak-regulated cell intercalation event leading to a novel radial cell polarity is involved in positioning of the follicle stem cell niche in the Drosophila ovary. Development (Cambridge, England). 142: 82-91
Shen W, Chen X, Cormier O, et al. (2013) Modulation of morphogenesis by Egfr during dorsal closure in Drosophila. Plos One. 8: e60180
Vlachos S, Harden N. (2011) Genetic evidence for antagonism between Pak protein kinase and Rho1 small GTPase signaling in regulation of the actin cytoskeleton during Drosophila oogenesis. Genetics. 187: 501-12
Bahri S, Wang S, Conder R, et al. (2010) The leading edge during dorsal closure as a model for epithelial plasticity: Pak is required for recruitment of the Scribble complex and septate junction formation. Development (Cambridge, England). 137: 2023-32
Zahedi B, Shen W, Xu X, et al. (2008) Leading edge-secreted Dpp cooperates with ACK-dependent signaling from the amnioserosa to regulate myosin levels during dorsal closure. Developmental Dynamics : An Official Publication of the American Association of Anatomists. 237: 2936-46
Conder R, Yu H, Zahedi B, et al. (2007) The serine/threonine kinase dPak is required for polarized assembly of F-actin bundles and apical-basal polarity in the Drosophila follicular epithelium. Developmental Biology. 305: 470-82
Wei HC, Sanny J, Shu H, et al. (2003) The Sac1 lipid phosphatase regulates cell shape change and the JNK cascade during dorsal closure in Drosophila. Current Biology : Cb. 13: 1882-7
Harden N, Ricos M, Yee K, et al. (2002) Drac1 and Crumbs participate in amnioserosa morphogenesis during dorsal closure in Drosophila. Journal of Cell Science. 115: 2119-29
Harden N, Ricos M, Ong YM, et al. (1999) Participation of small GTPases in dorsal closure of the Drosophila embryo: distinct roles for Rho subfamily proteins in epithelial morphogenesis. Journal of Cell Science. 112: 273-84
Harden N, Lee J, Loh HY, et al. (1996) A Drosophila homolog of the Rac- and Cdc42-activated serine/threonine kinase PAK is a potential focal adhesion and focal complex protein that colocalizes with dynamic actin structures. Molecular and Cellular Biology. 16: 1896-908
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