Gregory Weber

Affiliations: 
2006- Cell Biology University of Virginia, Charlottesville, VA 
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"Gregory Weber"
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Mariani RA, Paranjpe S, Dobrowolski R, et al. (2020) 14-3-3 targets keratin intermediate filaments to mechanically sensitive cell-cell contacts. Molecular Biology of the Cell. mbcE18060373
Sonavane PR, Wang C, Dzamba B, et al. (2017) Mechanical and signaling roles for keratin intermediate filaments in the assembly and morphogenesis of mesendoderm tissue at gastrulation. Development (Cambridge, England)
Sanghvi-Shah R, Weber GF. (2017) Intermediate Filaments at the Junction of Mechanotransduction, Migration, and Development. Frontiers in Cell and Developmental Biology. 5: 81
Batra N, Burra S, Siller-Jackson AJ, et al. (2012) Mechanical stress-activated integrin α5β1 induces opening of connexin 43 hemichannels. Proceedings of the National Academy of Sciences of the United States of America. 109: 3359-64
Weber GF, Bjerke MA, DeSimone DW. (2012) A mechanoresponsive cadherin-keratin complex directs polarized protrusive behavior and collective cell migration. Developmental Cell. 22: 104-15
Weber GF, Bjerke MA, DeSimone DW. (2011) Integrins and cadherins join forces to form adhesive networks. Journal of Cell Science. 124: 1183-93
Weber G, Bjerke MA, DeSimone DW. (2011) Erratum: Integrins and cadherins join forces to form adhesive networks Journal of Cell Science. 124
Rozario T, Dzamba B, Weber GF, et al. (2009) The physical state of fibronectin matrix differentially regulates morphogenetic movements in vivo. Developmental Biology. 327: 386-98
Weber GF, Menko AS. (2006) Phosphatidylinositol 3-kinase is necessary for lens fiber cell differentiation and survival. Investigative Ophthalmology & Visual Science. 47: 4490-9
Weber GF, Menko AS. (2006) Actin filament organization regulates the induction of lens cell differentiation and survival. Developmental Biology. 295: 714-29
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