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间隙连接蛋白连接蛋白43羧基末端与细胞质环结构域之间pH依赖性相互作用的表征

Characterization of the pH-dependent interaction between the gap junction protein connexin43 carboxyl terminus and cytoplasmic loop domains.

作者信息

Hirst-Jensen Bethany J, Sahoo Prangya, Kieken Fabien, Delmar Mario, Sorgen Paul L

机构信息

Department of Biochemistry and Molecular Biology, University of Nebraska Medical Center, Omaha, Nebraska 68198, USA.

出版信息

J Biol Chem. 2007 Feb 23;282(8):5801-13. doi: 10.1074/jbc.M605233200. Epub 2006 Dec 17.

Abstract

A prevailing view regarding the regulation of connexin43 (Cx43) gap junction channels is that, upon intracellular acidification, the carboxyl-terminal domain (Cx43CT) moves toward the channel opening to interact with specific residues acting as a receptor site. Previous studies have demonstrated a direct, pH-dependent interaction between the Cx43CT and a Cx43 cytoplasmic loop (Cx43CL) peptide. This interaction was dependent on alpha-helical formation for the peptide in response to acidification; more recent studies have shown that acidification also induces Cx43CT dimerization. Whether Cx43CT dimerization is an important structural component in Cx43 regulation remains to be determined. Here we used an assortment of complimentary biophysical techniques to characterize the binding of Cx43CT or its mutants to itself and/or to a more native-like Cx43CL construct (Cx43CL(100-155), residues 100-155). Our studies expand the observation that specific Cx43CT domains are important for dimerization. We further show that properties of the Cx43CL(100-155) are different from those of the Cx43CL peptide; solvent acidification leads to Cx43CL(100-155) oligomerization and a change in the stoichiometry and binding affinity for the Cx43CT. Homo-Cx43CT and Cx43CL(100-155) oligomerization as well as the Cx43CT/Cx43CL(100-155) interaction can occur under in vivo conditions; moreover, we show that Cx43CL(100-155) strongly affects resonance peaks corresponding to Cx43CT residues Arg-376-Asp-379 and Asn-343-Lys-346. Overall, our data indicate that many of the sites involved in Cx43CT dimerization are also involved in the Cx43CT/Cx43CL interaction; we further propose that chemically induced Cx43CT and Cx43CL oligomerization is important for the interaction between these cytoplasmic domains, which leads to chemically induced gating of Cx43 channels.

摘要

关于连接蛋白43(Cx43)间隙连接通道调节的一种普遍观点是,在细胞内酸化时,羧基末端结构域(Cx43CT)向通道开口移动,与作为受体位点的特定残基相互作用。先前的研究已经证明Cx43CT与Cx43细胞质环(Cx43CL)肽之间存在直接的、pH依赖性相互作用。这种相互作用取决于肽在酸化时形成α螺旋;最近的研究表明,酸化还会诱导Cx43CT二聚化。Cx43CT二聚化是否是Cx43调节中的一个重要结构成分仍有待确定。在这里,我们使用了一系列互补的生物物理技术来表征Cx43CT或其突变体与自身和/或更接近天然状态的Cx43CL构建体(Cx43CL(100 - 155),第100 - 155位残基)的结合。我们的研究扩展了特定Cx43CT结构域对二聚化很重要这一观察结果。我们进一步表明,Cx43CL(100 - 155)的性质与Cx43CL肽的性质不同;溶剂酸化导致Cx43CL(100 - 155)寡聚化,并改变了对Cx43CT的化学计量和结合亲和力。同源Cx43CT和Cx43CL(100 - 155)寡聚化以及Cx43CT/Cx43CL(100 - 155)相互作用可以在体内条件下发生;此外,我们表明Cx43CL(100 - 155)强烈影响与Cx43CT残基Arg - 376 - Asp - 379和Asn - 343 - Lys - 346相对应的共振峰。总体而言,我们的数据表明,参与Cx43CT二聚化的许多位点也参与了Cx43CT/Cx43CL相互作用;我们进一步提出,化学诱导的Cx43CT和Cx43CL寡聚化对于这些细胞质结构域之间的相互作用很重要,这导致了化学诱导的Cx43通道门控。

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