Valiunas V, Gemel J, Brink P R, Beyer E C
Department of Physiology and Biophysics, State University of New York, Stony Brook, New York 11794, USA.
Am J Physiol Heart Circ Physiol. 2001 Oct;281(4):H1675-89. doi: 10.1152/ajpheart.2001.281.4.H1675.
Many cardiovascular cells coexpress multiple connexins (Cx), leading to the potential formation of mixed (heteromeric) gap junction hemichannels whose biophysical properties may differ from homomeric channels containing only one connexin type. We examined the potential interaction of connexin Cx43 and Cx40 in HeLa cells sequentially stably transfected with these two connexins. Immunoblots verified the production of comparable amounts of both connexins, cross-linking showed that both connexins formed oligomers, and immunofluorescence showed extensive colocalization. Moreover, Cx40 copurified with (His)(6)-tagged Cx43 by affinity chromatography of detergent-solubilized connexons, demonstrating the presence of both connexins in some hemichannels. The dual whole cell patch-clamp method was used to compare the gating properties of gap junctions in HeLa Cx43/Cx40 cells with homotypic (Cx40-Cx40 and Cx43-Cx43) and heterotypic (Cx40-Cx43) gap junctions. Many of the observed single channel conductances resembled those of homotypic or heterotypic channels. The steady-state junctional conductance (g(j,ss)) in coexpressing cell pairs showed a reduced sensitivity to the voltage between cells (V(j)) compared with homotypic gap junctions and/or an asymmetrical V(j) dependence reminiscent of heterotypic gap junctions. These gating properties could be fit using a combination of homotypic and heterotypic channel properties. Thus, whereas our biochemical evidence suggests that Cx40 and Cx43 form heteromeric connexons, we conclude that they are functionally insignificant with regard to voltage-dependent gating.
许多心血管细胞共表达多种连接蛋白(Cx),这可能导致混合(异源)间隙连接半通道的形成,其生物物理特性可能与仅包含一种连接蛋白类型的同源通道不同。我们研究了在稳定转染了这两种连接蛋白的HeLa细胞中连接蛋白Cx43和Cx40之间的潜在相互作用。免疫印迹证实了两种连接蛋白的产量相当,交联显示两种连接蛋白均形成寡聚体,免疫荧光显示广泛的共定位。此外,通过去污剂溶解的连接子的亲和层析,Cx40与(His)6标记的Cx43共纯化,证明了在一些半通道中存在这两种连接蛋白。采用双全细胞膜片钳方法比较HeLa Cx43/Cx40细胞中同源(Cx40-Cx40和Cx43-Cx43)和异源(Cx40-Cx43)间隙连接的门控特性。观察到的许多单通道电导类似于同源或异源通道的电导。与同源间隙连接相比,共表达细胞对中的稳态连接电导(g(j,ss))对细胞间电压(V(j))的敏感性降低,和/或具有类似于异源间隙连接的不对称V(j)依赖性。这些门控特性可以用同源和异源通道特性的组合来拟合。因此,尽管我们的生化证据表明Cx40和Cx43形成了异源连接子,但我们得出结论,就电压依赖性门控而言,它们在功能上并不重要。