Skin Stem Cells Orchestrate Directional Migration by Regulating Microtubule-ACF7 Connections through GSK3β
暂无分享,去创建一个
Elaine Fuchs | E. Fuchs | Hongwei Wang | Q. Shen | D. Oristian | Qing-Tao Shen | Xiaoyang Wu | Hong-Wei Wang | Qinsi Zheng | Xiaoyang Wu | Daniel S. Oristian | Catherine P. Lu | Qinsi Zheng | C. Lu
[1] Kossay Zaoui,et al. ErbB2 receptor controls microtubule capture by recruiting ACF7 to the plasma membrane of migrating cells , 2010, Proceedings of the National Academy of Sciences.
[2] Gaudenz Danuser,et al. Analysis of Microtubule Dynamic Instability Using a Plus End Growth Marker , 2010, Nature Methods.
[3] R. Liem,et al. Nervous-tissue-specific elimination of microtubule-actin crosslinking factor 1a results in multiple developmental defects in the mouse brain , 2010, Molecular and Cellular Neuroscience.
[4] T. Sun,et al. Glycogen synthase kinase 3 in the world of cell migration , 2009, Development, growth & differentiation.
[5] Andrew W. Folkmann,et al. Golgi-derived CLASP-dependent Microtubules Control Golgi Organization and Polarized Trafficking in Motile Cells , 2009, Nature Cell Biology.
[6] E. Fuchs. The Tortoise and the Hair: Slow-Cycling Cells in the Stem Cell Race , 2009, Cell.
[7] E. Fuchs,et al. Epidermal homeostasis: a balancing act of stem cells in the skin , 2009, Nature Reviews Molecular Cell Biology.
[8] H. Pasolli,et al. A two-step mechanism for stem cell activation during hair regeneration. , 2009, Cell stem cell.
[9] H. Pasolli,et al. New insights into cadherin function in epidermal sheet formation and maintenance of tissue integrity , 2008, Proceedings of the National Academy of Sciences.
[10] Elaine Fuchs,et al. ACF7 Regulates Cytoskeletal-Focal Adhesion Dynamics and Migration and Has ATPase Activity , 2008, Cell.
[11] E. Fuchs,et al. Hair follicle stem cells are specified and function in early skin morphogenesis. , 2008, Cell stem cell.
[12] R. Nusse,et al. Wnt signaling and stem cell control , 2008, Cell Research.
[13] Anna Akhmanova,et al. Tracking the ends: a dynamic protein network controls the fate of microtubule tips , 2008, Nature Reviews Molecular Cell Biology.
[14] Mayumi Ito,et al. Wnt-dependent de novo hair follicle regeneration in adult mouse skin after wounding , 2007, Nature.
[15] Martin R Schiller,et al. Minimotif Miner: A Computational Tool to Investigate Protein Function, Disease, and Genetic Diversity , 2007, Current protocols in protein science.
[16] Chris Q Doe,et al. Microtubule-induced cortical cell polarity. , 2007, Genes & development.
[17] R. Moon,et al. Distinct Wnt signaling pathways have opposing roles in appendage regeneration , 2006, Development.
[18] K. Kaibuchi,et al. Signaling Networks in Neuronal Polarization , 2006, The Journal of Neuroscience.
[19] R. Liem,et al. The role of microtubule actin cross-linking factor 1 (MACF1) in the Wnt signaling pathway. , 2006, Genes & development.
[20] Elaine Fuchs,et al. Lhx2 Maintains Stem Cell Character in Hair Follicles , 2006, Science.
[21] R. Moon,et al. Bmc Cell Biology Wnt Signaling Induces Epithelial Differentiation during Cutaneous Wound Healing , 2005 .
[22] Jane Q. Nguyen,et al. Stem cells in the hair follicle bulge contribute to wound repair but not to homeostasis of the epidermis , 2005, Nature Medicine.
[23] Elaine Fuchs,et al. Self-Renewal, Multipotency, and the Existence of Two Cell Populations within an Epithelial Stem Cell Niche , 2004, Cell.
[24] R. Liem,et al. Plakins: Goliaths that link cell junctions and the cytoskeleton , 2004, Nature Reviews Molecular Cell Biology.
[25] Yaping Liu,et al. Capturing and profiling adult hair follicle stem cells , 2004, Nature Biotechnology.
[26] S. Etienne-Manneville,et al. Cdc42 - the centre of polarity , 2004, Journal of Cell Science.
[27] T. Takenawa,et al. Focal Adhesion Kinase Regulation of N-WASP Subcellular Localization and Function* , 2004, Journal of Biological Chemistry.
[28] E. Fuchs,et al. Defining the Epithelial Stem Cell Niche in Skin , 2004, Science.
[29] Elaine Fuchs,et al. ACF7 An essential integrator of microtubule dynamics , 2003, Cell.
[30] C. Waterman-Storer,et al. Conserved microtubule–actin interactions in cell movement and morphogenesis , 2003, Nature Cell Biology.
[31] Michael B. Yaffe,et al. Scansite 2.0: proteome-wide prediction of cell signaling interactions using short sequence motifs , 2003, Nucleic Acids Res..
[32] M. Ginsberg. Faculty Opinions recommendation of Cdc42 regulates GSK-3beta and adenomatous polyposis coli to control cell polarity. , 2003 .
[33] N. Brown,et al. The `Spectraplakins': cytoskeletal giants with characteristics of both spectrin and plakin families , 2002, Journal of Cell Science.
[34] R. Liem,et al. Characterization of the microtubule binding domain of microtubule actin crosslinking factor (MACF): identification of a novel group of microtubule associated proteins. , 2001, Journal of cell science.
[35] E. Fuchs,et al. An Epidermal Plakin That Integrates Actin and Microtubule Networks at Cellular Junctions , 2000, The Journal of cell biology.
[36] J. Wolff,et al. Preparation and properties of pure tubulin S. , 1999, Cell motility and the cytoskeleton.
[37] D. Lauffenburger,et al. Cell Migration: A Physically Integrated Molecular Process , 1996, Cell.
[38] J P Schroeter,et al. SUPRIM: easily modified image processing software. , 1996, Journal of structural biology.