Click here to close
Hello! We notice that you are using Internet Explorer, which is not supported by Xenbase and may cause the site to display incorrectly.
We suggest using a current version of Chrome,
FireFox, or Safari.
Molecular analysis of voltage dependence of heterotypic gap junctions formed by connexins 26 and 32.
Rubin JB, Verselis VK, Bennett MV, Bargiello TA.
???displayArticle.abstract???
Heterotypic gap junctions formed by pairing Xenopus oocytes expressing hemichannels formed of Cx32 with those expressing hemichannels formed of Cx26 displayed novel transjunctional voltage (Vj) dependence not predicted by the behavior of these connexins in homotypic configurations. Rectification of initial and steady-state currents was observed. Relative positivity and negativity on the Cx26 side of the junction resulted in increased and decreased initial conductance (gj0), respectively. Only relative positivity on the Cx26 decreased steady-state conductance (gj infinity). This behavior suggested that interactions between hemichannels influences gap junction gating. The role of the first extracellular loop (E1) in these interactions was examined by pairing Cx32 and Cx26 with a chimeric connexin in which Cx32 E1 was replaced with Cx26 E1 (Cx32*26E1). Both junctions rectified with gj0/Vj relations that were less steep than that observed for Cx32/Cx26. Decreases in gj infinity occurred for either polarity Vj in the Cx32/Cx32*26E1 junction. Mutation of two amino acids in Cx26 E1 increased the steepness of both the gj0/Vj and gj infinity/Vj relations. These data demonstrate that fast rectification can arise from mismatched E1 domains and that E1 may contribute to the voltage sensing mechanisms underlying both fast and slow Vj-dependent processes.
Auerbach,
A rectifying electrotonic synapse in the central nervous system of a vertebrate.
1969, Pubmed
Auerbach,
A rectifying electrotonic synapse in the central nervous system of a vertebrate.
1969,
Pubmed Auld,
A neutral amino acid change in segment IIS4 dramatically alters the gating properties of the voltage-dependent sodium channel.
1990,
Pubmed
,
Xenbase Barrio,
Gap junctions formed by connexins 26 and 32 alone and in combination are differently affected by applied voltage.
1991,
Pubmed
,
Xenbase Bennett,
Gap junctions: new tools, new answers, new questions.
1991,
Pubmed Bennett,
Physiology of electrotonic junctions.
1966,
Pubmed Brink,
Nexal membrane permeability to anions.
1978,
Pubmed Ebihara,
Cloning and expression of a Xenopus embryonic gap junction protein.
1989,
Pubmed
,
Xenbase Fishman,
Functional analysis of human cardiac gap junction channel mutants.
1991,
Pubmed FURSHPAN,
Transmission at the giant motor synapses of the crayfish.
1959,
Pubmed Giaume,
Voltage-clamp analysis of a crayfish rectifying synapse.
1987,
Pubmed Gimlich,
Differential regulation of the levels of three gap junction mRNAs in Xenopus embryos.
1990,
Pubmed
,
Xenbase Harris,
Kinetic properties of a voltage-dependent junctional conductance.
1981,
Pubmed Hartmann,
Exchange of conduction pathways between two related K+ channels.
1991,
Pubmed
,
Xenbase Hertzberg,
Topology of the Mr 27,000 liver gap junction protein. Cytoplasmic localization of amino- and carboxyl termini and a hydrophilic domain which is protease-hypersensitive.
1988,
Pubmed Methfessel,
Patch clamp measurements on Xenopus laevis oocytes: currents through endogenous channels and implanted acetylcholine receptor and sodium channels.
1986,
Pubmed
,
Xenbase Milks,
Topology of the 32-kd liver gap junction protein determined by site-directed antibody localizations.
1988,
Pubmed Moreno,
Connexin32 gap junction channels in stably transfected cells. Equilibrium and kinetic properties.
1991,
Pubmed Nicholson,
Two homologous protein components of hepatic gap junctions.
,
Pubmed Paul,
Molecular cloning of cDNA for rat liver gap junction protein.
1986,
Pubmed Spray,
Physiology and pharmacology of gap junctions.
1985,
Pubmed Swenson,
Formation of gap junctions by expression of connexins in Xenopus oocyte pairs.
1989,
Pubmed
,
Xenbase Tanabe,
Repeat I of the dihydropyridine receptor is critical in determining calcium channel activation kinetics.
1991,
Pubmed Verdoorn,
Structural determinants of ion flow through recombinant glutamate receptor channels.
1991,
Pubmed Verselis,
Voltage clamp of the earthworm septum.
1984,
Pubmed Verselis,
A voltage-dependent gap junction in Drosophila melanogaster.
1991,
Pubmed Willecke,
Mouse connexin37: cloning and functional expression of a gap junction gene highly expressed in lung.
1991,
Pubmed
,
Xenbase Yancey,
The 43-kD polypeptide of heart gap junctions: immunolocalization, topology, and functional domains.
1989,
Pubmed Zhang,
Sequence and tissue distribution of a second protein of hepatic gap junctions, Cx26, as deduced from its cDNA.
1989,
Pubmed