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The Journal of Biological Chemistry|July 4, 2012
Loss of pannexin 1 attenuates melanoma progression by reversion to a melanocytic phenotypeSilvia Penuela, Laszlo Gyenis, Amber Ablack, et al.
Cell Communication & Adhesion|March 15, 2006
Functional characterization of oculodentodigital dysplasia-associated Cx43 mutantsElizabeth McLachlan, Janet L Manias, Xiang-Qun Gong, et al.
Stem Cells (Dayton, Ohio)|October 25, 2019
Dynamic regulation of connexins in stem cell pluripotencyJessica L Esseltine, Courtney R Brooks, Nicole A Edwards, et al.
Bioscience Reports|February 13, 2019
Ablation of both Cx40 and Panx1 results in similar cardiovascular phenotypes exhibited in Cx40 knockout miceNicole M Novielli-Kuntz, Meghan Jelen, Kevin Barr, et al.
Journal of Cell Science|October 11, 2007
Pannexin 1 and pannexin 3 are glycoproteins that exhibit many distinct characteristics from the connexin family of gap junction proteinsSilvia Penuela, Ruchi Bhalla, Xiang-Qun Gong, et al.
Journal of Cell Science|March 27, 2024
Cx31.1 can selectively intermix with co-expressed connexins to facilitate its assembly into gap junctionsStephanie E Leighton, Robert S Wong, Sergiu A Lucaciu, et al.
The Journal of Biological Chemistry|January 13, 2005
Oculodentodigital dysplasia-causing connexin43 mutants are non-functional and exhibit dominant effects on wild-type connexin43Wendi Roscoe, Gregory I L Veitch, Xiang-Qun Gong, et al.
Graefe'S Archive for Clinical and Experimental Ophthalmology = Albrecht Von Graefes Archiv Fur Klinische Und Experimentelle Ophthalmologie|December 6, 2011
The effect of connexin43 on the level of vascular endothelial growth factor in human retinal pigment epithelial cellsCady E Pocrnich, Qing Shao, Hong Liu, et al.
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