Inducible Coexpression of Connexin37 or Connexin40 with Connexin43 Selectively Affects Intercellular Molecular Transfer

被引:0
作者
Joanna Gemel
Tasha K. Nelson
Janis M. Burt
Eric C. Beyer
机构
[1] University of Chicago,Department of Pediatrics
[2] University of Arizona,Department of Physiology
[3] University of Chicago,Section of Pediatric Hematology/Oncology
来源
The Journal of Membrane Biology | 2012年 / 245卷
关键词
Connexins; Electrophysiology; Gap junction; Gap junctions; Gap junctions/cell–cell channels;
D O I
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中图分类号
学科分类号
摘要
Many tissues express multiple gap junction proteins, or connexins (Cx); for example, Cx43, Cx40, and Cx37 are coexpressed in vascular cells. This study was undertaken to elucidate the consequences of coexpression of Cx40 or Cx37 with Cx43 at different ratios. EcR-293 cells (which endogenously produce Cx43) were transfected with ecdysone-inducible plasmids encoding Cx37 or Cx40. Immmunoblotting showed a ponasterone dose-dependent induction of Cx37 or Cx40 while constant levels of Cx43 were maintained. The coexpressed connexins colocalized at appositional membranes. Double whole-cell patch clamp recordings showed no significant change in total junctional conductances in cells treated with 0, 0.5, or 4 μM ponasterone; however, they did show a diversity of unitary channel sizes consistent with the induced connexin expression. In cells with induced expression of either Cx40 or Cx37, intercellular transfer of microinjected Lucifer yellow was reduced, but transfer of NBD-TMA (2-(4-nitro-2,1,3-benzoxadiol-7-yl)[aminoethyl]trimethylammonium) was not affected. In cocultures containing uninduced EcR cells together with cells induced to coexpress Cx37 or Cx40, Lucifer yellow transfer was observed only between the cells expressing Cx43 alone. These data show that induced expression of either Cx37 or Cx40 in Cx43-expressing cells can selectively alter the intercellular exchange of some molecules without affecting the transfer of others.
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页码:231 / 241
页数:10
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共 222 条
[41]  
Hsu LA(2001)Gap junction channels formed by coexpressed connexin40 and connexin43 Am J Physiol Heart Circ Physiol 281 H1675-H1689
[42]  
Chang GJ(2002)Cardiac gap junction channels show quantitative differences in selectivity Circ Res 91 104-111
[43]  
Chen CF(1994)Connexin37 forms high conductance gap junction channels with subconductance state activity and selective dye and ionic permeabilities Biophys J 66 1915-1928
[44]  
Yeh HI(1995)Selectivity of connexin-specific gap junctions does not correlate with channel conductance Circ Res 77 1156-1165
[45]  
Ko YS(2004)The permeability of gap junction channels to probes of different size is dependent on connexin composition and permeant-pore affinities Biophys J 87 958-973
[46]  
Chanson M(2006)Connexin37 protects against atherosclerosis by regulating monocyte adhesion Nat Med 12 950-954
[47]  
Derouette JP(2000)Age-related alteration of gap junction distribution and connexin expression in rat aortic endothelium J Histochem Cytochem 48 1377-1389
[48]  
Roth I(2003)LacSwitch II regulation of connexin43 cDNA expression enables gap-junction single-channel analysis Biotechniques 34 1034-1046
[49]  
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