Department of Biochemistry and Molecular Biology, University of Nebraska Medical Center, Omaha, NE 68198, USA.
Int J Mol Sci. 2018 May 24;19(6):1562. doi: 10.3390/ijms19061562.
Activation of Wnt signaling induces Connexin43 (Cx43) expression via the transcriptional activity of β-catenin, and results in the enhanced accumulation of the Cx43 protein and the formation of gap junction channels. In response to Wnt signaling, β-catenin co-localizes with the Cx43 protein itself as part of a complex at the gap junction plaque. Work from several labs have also shown indirect evidence of this interaction via reciprocal co-immunoprecipitation. Our goal for the current study was to identify whether β-catenin directly interacts with Cx43, and if so, the location of that direct interaction. Identifying residues involved in direct protein⁻protein interaction is of importance when they are correlated to the phosphorylation of Cx43, as phosphorylation can modify the binding affinities of Cx43 regulatory protein partners. Therefore, combining the location of a protein partner interaction on Cx43 along with the phosphorylation pattern under different homeostatic and pathological conditions will be crucial information for any potential therapeutic intervention. Here, we identified that β-catenin directly interacts with the Cx43 carboxyl-terminal domain, and that this interaction would be inhibited by the Src phosphorylation of Cx43CT residues Y265 and Y313.
Wnt 信号的激活通过β-catenin 的转录活性诱导连接蛋白 43(Cx43)的表达,导致 Cx43 蛋白的积累增强,并形成间隙连接通道。在 Wnt 信号的作用下,β-catenin 与 Cx43 蛋白本身作为间隙连接斑复合物的一部分共定位。几个实验室的工作也通过相互免疫沉淀提供了这种相互作用的间接证据。我们当前研究的目标是确定β-catenin 是否与 Cx43 直接相互作用,如果是这样,那么直接相互作用的位置在哪里。当 Cx43 的磷酸化与 Cx43 调节蛋白伴侣的磷酸化相关时,确定直接蛋白质-蛋白质相互作用涉及的残基非常重要,因为磷酸化可以改变 Cx43 调节蛋白伴侣的结合亲和力。因此,在不同的稳态和病理条件下,将 Cx43 上的蛋白伴侣相互作用的位置与磷酸化模式结合起来,将是任何潜在治疗干预的关键信息。在这里,我们确定β-catenin 与 Cx43 的羧基末端结构域直接相互作用,并且这种相互作用会被 Cx43CT 残基 Y265 和 Y313 的Src 磷酸化抑制。