Heyman Nathanael S, Kurjiaka David T, Ek Vitorin Jose F, Burt Janis M
Department of Physiology, University of Arizona, Tucson, AZ 85724, USA.
Am J Physiol Heart Circ Physiol. 2009 Jul;297(1):H450-9. doi: 10.1152/ajpheart.00287.2009. Epub 2009 May 22.
Expression of connexin 40 (Cx40) and Cx43 in cardiovascular tissues varies as a function of age, injury, and development with unknown consequences on the selectivity of junctional communication and its acute regulation. We investigated the PKC-dependent regulation of charge selectivity in junctions composed of Cx43, Cx40, or both by simultaneous assessment of junctional permeance rate constants (B(dye)) for dyes of similar size but opposite charge, N,N,N-trimethyl-2-[methyl-(7-nitro-2,1,3-benzoxadiol-4-yl)amino]ethanaminium (NBD-M-TMA; +1) and Alexa 350 (-1). The ratio of dye rate constants (B(NBD-M-TMA)/B(Alexa 350)) indicated that Cx40 junctions are cation selective (10.7 +/- 0.5), whereas Cx43 junction are nonselective (1.22 +/- 0.14). In coexpressing cells, a broad range of junctional selectivities was observed with mean cation selectivity increasing as the Cx40 to Cx43 expression ratio increased. PKC activation reduced or eliminated dye permeability of Cx43 junctions without altering their charge selectivity, had no effect on either permeability or charge selectivity of Cx40 junctions, and significantly increased the cation selectivity of junctions formed by coexpressing cells (approaching charge selectivity of Cx40 junctions). Junctions composed of Cx43 truncated at residue 257 (Cx43tr) were also not charge selective, but when Cx43tr was coexpressed with Cx40, a broad range of junctional selectivities that was unaffected by PKC activation was observed. Thus, whereas the charge selectivities of homomeric/homotypic Cx43 and Cx40 junctions appear invariant, the selectivities of junctions formed by cells coexpressing Cx40 and Cx43 vary considerably, reflecting both their relative expression levels and phosphorylation-dependent regulation. Such regulation could represent a mechanism by which coexpressing cells such as vascular endothelium and atrial cells regulate acutely the selective intercellular communication mediated by their gap junctions.
连接蛋白40(Cx40)和Cx43在心血管组织中的表达随年龄、损伤和发育而变化,对连接通讯的选择性及其急性调节的影响尚不清楚。我们通过同时评估大小相似但电荷相反的染料N,N,N-三甲基-2-[甲基-(7-硝基-2,1,3-苯并恶二唑-4-基)氨基]乙铵(NBD-M-TMA;+1)和Alexa 350(-1)的连接通透速率常数(B(染料)),研究了PKC对由Cx43、Cx40或两者组成的连接中电荷选择性的依赖性调节。染料速率常数的比值(B(NBD-M-TMA)/B(Alexa 350))表明,Cx40连接对阳离子具有选择性(10.7±0.5),而Cx43连接则无选择性(1.22±0.14)。在共表达细胞中,观察到广泛的连接选择性范围,随着Cx40与Cx43表达比值的增加,平均阳离子选择性增加。PKC激活降低或消除了Cx43连接的染料通透性,但不改变其电荷选择性,对Cx40连接的通透性或电荷选择性均无影响,并显著增加了共表达细胞形成的连接的阳离子选择性(接近Cx40连接的电荷选择性)。由残基257处截短的Cx43(Cx43tr)组成的连接也没有电荷选择性,但当Cx43tr与Cx40共表达时,观察到广泛的连接选择性范围,且不受PKC激活的影响。因此,虽然同聚体/同型Cx43和Cx40连接的电荷选择性似乎不变,但共表达Cx40和Cx43的细胞形成的连接的选择性差异很大,这反映了它们的相对表达水平和磷酸化依赖性调节。这种调节可能代表一种机制,通过该机制,共表达细胞如血管内皮细胞和心房细胞可急性调节由其间隙连接介导的选择性细胞间通讯。