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Summary Expression Gene Literature (13) GO Terms (3) Nucleotides (38) Proteins (9) Interactants (26) Wiki
XB--17347047

Papers associated with mgc69466

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Loss of functional endothelial connexin40 results in exercise-induced hypertension in mice., Morton SK, Chaston DJ, Howitt L, Heisler J, Nicholson BJ, Fairweather S, Bröer S, Ashton AW, Matthaei KI, Hill CE., Hypertension. March 1, 2015; 65 (3): 662-9.


Blood vessel tubulogenesis requires Rasip1 regulation of GTPase signaling., Xu K, Sacharidou A, Fu S, Chong DC, Skaug B, Chen ZJ, Davis GE, Cleaver O., Dev Cell. April 19, 2011; 20 (4): 526-39.  


Characterization of the structure and intermolecular interactions between the connexin40 and connexin43 carboxyl-terminal and cytoplasmic loop domains., Bouvier D, Spagnol G, Chenavas S, Kieken F, Vitrac H, Brownell S, Kellezi A, Forge V, Sorgen PL., J Biol Chem. December 4, 2009; 284 (49): 34257-71.


Connexin31 cannot functionally replace connexin43 during cardiac morphogenesis in mice., Zheng-Fischhöfer Q, Ghanem A, Kim JS, Kibschull M, Schwarz G, Schwab JO, Nagy J, Winterhager E, Tiemann K, Willecke K., J Cell Sci. February 15, 2006; 119 (Pt 4): 693-701.


Cloning and functional characterization of a novel connexin expressed in somites of Xenopus laevis., De Boer TP, Kok B, Neuteboom KI, Spieker N, De Graaf J, Destrée OH, Rook MB, Van Veen TA, Jongsma HJ, Vos MA, De Bakker JM, Van Der Heyden MA., Dev Dyn. July 1, 2005; 233 (3): 864-71.            


CO(2) sensitivity of voltage gating and gating polarity of gapjunction channels--connexin40 and its COOH-terminus-truncated mutant., Peracchia C, Chen JT, Peracchia LL., J Membr Biol. July 15, 2004; 200 (2): 105-13.


A cardiac sodium channel mutation cosegregates with a rare connexin40 genotype in familial atrial standstill., Groenewegen WA, Firouzi M, Bezzina CR, Vliex S, van Langen IM, Sandkuijl L, Smits JP, Hulsbeek M, Rook MB, Jongsma HJ, Wilde AA., Circ Res. January 10, 2003; 92 (1): 14-22.


The carboxyl terminal domain regulates the unitary conductance and voltage dependence of connexin40 gap junction channels., Anumonwo JM, Taffet SM, Gu H, Chanson M, Moreno AP, Delmar M., Circ Res. April 13, 2001; 88 (7): 666-73.


Expression of major gap junction connexin types in the working myocardium of eight chordates., Becker DL, Cook JE, Davies CS, Evans WH, Gourdie RG., Cell Biol Int. January 1, 1998; 22 (7-8): 527-43.


Functional analysis of selective interactions among rodent connexins., White TW, Paul DL, Goodenough DA, Bruzzone R., Mol Biol Cell. April 1, 1995; 6 (4): 459-70.


Null mutations of connexin32 in patients with X-linked Charcot-Marie-Tooth disease., Bruzzone R, White TW, Scherer SS, Fischbeck KH, Paul DL., Neuron. November 1, 1994; 13 (5): 1253-60.


Connexin40, a component of gap junctions in vascular endothelium, is restricted in its ability to interact with other connexins., Bruzzone R, Haefliger JA, Gimlich RL, Paul DL., Mol Biol Cell. January 1, 1993; 4 (1): 7-20.


Molecular cloning and functional expression of mouse connexin40, a second gap junction gene preferentially expressed in lung., Hennemann H, Suchyna T, Lichtenberg-Fraté H, Jungbluth S, Dahl E, Schwarz J, Nicholson BJ, Willecke K., J Cell Biol. June 1, 1992; 117 (6): 1299-310.

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