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磷酸化调节连接蛋白 43/ZO-1 的结合和解离,这是缝隙连接周转的重要步骤。

Phosphorylation regulates connexin43/ZO-1 binding and release, an important step in gap junction turnover.

机构信息

Department of Biological Sciences, Lehigh University, Bethlehem, PA 18015.

Department of Biological Sciences, Lehigh University, Bethlehem, PA 18015

出版信息

Mol Biol Cell. 2017 Dec 1;28(25):3595-3608. doi: 10.1091/mbc.E16-07-0496. Epub 2017 Oct 11.

Abstract

To investigate whether connexin phosphorylation regulates the known role of zonula occludens-1 protein (ZO-1) in gap junction (GJ) function, we generated and analyzed a series of phosphomimetic and phosphorylation-dead mutants by mutating known conserved regulatory serine (S) residues 255, 279/282, 365, 368, and 373 located in the C-terminal domain of connexin43 (Cx43) into glutamic acid (E) or alanine (A) residues. All connexin mutants were translated into stable, full-length proteins and assembled into GJs when expressed in HeLa or Madin-Darby canine kidney epithelial cells. However, mutants with S residues exchanged at positions 365, 368, and 373 exhibited a significantly altered ZO-1 interaction profile, while mutants with S residues exchanged at 255 and 279/282 did not. Unlike wild-type Cx43, in which ZO-1 binding is restricted to the periphery of GJ plaques, S365A, S365E, S368A, S368E, and S373A mutants bound ZO-1 throughout the GJ plaques, while the S373E mutant did not bind ZO-1 at all. Inability to disengage from ZO-1 correlated with increased GJ plaque size and increased connexin protein half-life, while maintaining GJ channels in an open, functional state. Quantitative clathrin-binding analyses revealed no significant alterations in clathrin-binding efficiency, suggesting that the inability to disengage from ZO-1 prevented maturation of functional into nonfunctional/endocytic channels, rather than ZO-1 interfering with GJ endocytosis directly. Collectively, our results indicate that ZO-1 binding regulates channel accrual, while disengagement from ZO-1 is critical for GJ channel closure and transitioning GJ channels for endocytosis. Intriguingly, these transitional ZO-1 binding/release and channel-aging steps are mediated by a series of hierarchical phosphorylation/dephosphorylation events at S373, S365, and S368, well-known Cx43 Akt, protein kinase A, and protein kinase C phosphorylation sites located in the vicinity of the ZO-1 binding site.

摘要

为了研究连接蛋白磷酸化是否调节已知的紧密连接蛋白-1(ZO-1)在缝隙连接(GJ)功能中的作用,我们通过将位于连接蛋白 43(Cx43)C 端结构域中的已知保守调节性丝氨酸(S)残基 255、279/282、365、368 和 373 突变为谷氨酸(E)或丙氨酸(A)残基,生成并分析了一系列磷酸化模拟和磷酸化失活突变体。当在 HeLa 或 Madin-Darby 犬肾上皮细胞中表达时,所有连接蛋白突变体均被翻译为稳定的全长蛋白,并组装成 GJ。然而,S 残基位置 365、368 和 373 发生交换的突变体表现出明显改变的 ZO-1 相互作用谱,而 S 残基位置 255 和 279/282 发生交换的突变体则没有。与野生型 Cx43 不同,在野生型 Cx43 中,ZO-1 的结合仅限于 GJ 斑块的外围,而 S365A、S365E、S368A、S368E 和 S373A 突变体则在整个 GJ 斑块上结合 ZO-1,而 S373E 突变体则根本不结合 ZO-1。与 ZO-1 无法脱离相关的是 GJ 斑块增大和连接蛋白半衰期延长,同时保持 GJ 通道处于开放、功能状态。定量网格蛋白结合分析显示网格蛋白结合效率没有明显改变,这表明与 ZO-1 脱离的能力阻止了功能性向非功能性/内吞作用通道的成熟,而不是 ZO-1 直接干扰 GJ 内吞作用。总的来说,我们的结果表明 ZO-1 的结合调节通道的积累,而与 ZO-1 的脱离对于 GJ 通道的关闭和 GJ 通道向内吞作用的转变至关重要。有趣的是,这些过渡性的 ZO-1 结合/释放和通道老化步骤是由 S373、S365 和 S368 处一系列级联磷酸化/去磷酸化事件介导的,S373、S365 和 S368 是 Cx43 Akt、蛋白激酶 A 和蛋白激酶 C 的磷酸化位点,位于 ZO-1 结合位点附近。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/75a1/5706988/d72b7f6c70ce/3595fig2.jpg

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