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Connexin domains relevant to the chemical gating of gap junction channels. , Peracchia C ., Braz J Med Biol Res. May 1, 1997; 30 (5): 577-90.
Positive charges of the initial C-terminus domain of Cx32 inhibit gap junction gating sensitivity to CO2. , Wang XG ., Biophys J. August 1, 1997; 73 (2): 798-806.
Hetero-domain interactions as a mechanism for the regulation of connexin channels. , Stergiopoulos K., Circ Res. May 28, 1999; 84 (10): 1144-55.
Molecular dissection of transjunctional voltage dependence in the connexin-32 and connexin-43 junctions. , Revilla A., Biophys J. September 1, 1999; 77 (3): 1374-83.
Virtual cloning, functional expression, and gating analysis of human connexin31.9. , White TW., Am J Physiol Cell Physiol. September 1, 2002; 283 (3): C960-70.
Single-channel SCAM identifies pore-lining residues in the first extracellular loop and first transmembrane domains of Cx46 hemichannels. , Kronengold J., J Gen Physiol. October 1, 2003; 122 (4): 389-405.
CO(2) sensitivity of voltage gating and gating polarity of gapjunction channels-- connexin40 and its COOH-terminus-truncated mutant. , Peracchia C ., J Membr Biol. July 15, 2004; 200 (2): 105-13.
XEpac, a guanine nucleotide-exchange factor for Rap GTPase, is a novel hatching gland specific marker during the Xenopus embryogenesis. , Lee SJ., Dev Dyn. April 1, 2005; 232 (4): 1091-7.
Global analysis of the transcriptional network controlling Xenopus endoderm formation. , Sinner D ., Development. May 1, 2006; 133 (10): 1955-66.
The nephrogenic potential of the transcription factors osr1, osr2, hnf1b, lhx1 and pax8 assessed in Xenopus animal caps. , Drews C., BMC Dev Biol. January 31, 2011; 11 5.
Voltage-dependent gating of the Cx32*43E1 hemichannel: conformational changes at the channel entrances. , Kwon T ., J Gen Physiol. February 1, 2013; 141 (2): 243-59.
The carboxyl terminal residues 220-283 are not required for voltage gating of a chimeric connexin32 hemichannel. , Kwon T ., Biophys J. September 17, 2013; 105 (6): 1376-82.