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Cell Communication & Adhesion|December 19, 2003
Transcriptional and translational regulation of zebrafish connexin 55.5 (zf.Cx.55.5) and connexin 52.6 (zf.Cx52.6)Mahbob-Ul Hussain, Marian Kremer, Georg Zoidl, et al.
The European Journal of Neuroscience|July 20, 2005
Site-specific and developmental expression of pannexin1 in the mouse nervous systemArundhati Ray, Georg Zoidl, Svenja Weickert, et al.
Cell Communication & Adhesion|July 24, 2008
Molecular diversity of connexin and pannexin genes in the retina of the zebrafish Danio rerioGeorg Zoidl, Marian Kremer, Christiane Zoidl, et al.
The Journal of Biological Chemistry|September 11, 2010
Intracellular cysteine 346 is essentially involved in regulating Panx1 channel activityStefanie Bunse, Matthias Schmidt, Nora Prochnow, et al.
The Journal of Biological Chemistry|November 3, 2010
Pannexin 1 constitutes the large conductance cation channel of cardiac myocytesMarie-Cecile Kienitz, Kirsten Bender, Rolf Dermietzel, et al.
BMC Molecular Biology|May 29, 2008
IRES-mediated translation of the carboxy-terminal domain of the horizontal cell specific connexin Cx55.5 in vivo and in vitroMahboob Ul-Hussain, Georg Zoidl, Jan Klooster, et al.
The Journal of Membrane Biology|September 23, 2011
Single cysteines in the extracellular and transmembrane regions modulate pannexin 1 channel functionStefanie Bunse, Matthias Schmidt, Sarah Hoffmann, et al.
Brain Research|July 17, 2012
Calmodulin dependent protein kinase increases conductance at gap junctions formed by the neuronal gap junction protein connexin36Cristiane Del Corsso, Rodolfo Iglesias, Georg Zoidl, et al.
The FEBS Journal|September 29, 2009
The potassium channel subunit Kvbeta3 interacts with pannexin 1 and attenuates its sensitivity to changes in redox potentialsStefanie Bunse, Silviu Locovei, Matthias Schmidt, et al.
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