首页> 外文期刊>Journal of Molecular and Cellular Cardiology >Phosphorylation of Cx43 residue Y313 by Src contributes to blocking the interaction with Drebrin and disassembling gap junctions
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Phosphorylation of Cx43 residue Y313 by Src contributes to blocking the interaction with Drebrin and disassembling gap junctions

机译:SRC的CX43残基Y313的磷酸化有助于阻断与翅膀和拆卸间隙连接的相互作用

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Phosphorylation regulates connexin43 (Cx43) function from assembly/disassembly to coupling at the plaque. Src is a tyrosine kinase known to both phosphorylate Cx43 (residues Y247 and Y265) and affect gap junction intercellular communication. However, the Cx43 carboxyl-terminal (CT) domain contains additional tyrosine residues and proteomic discovery mass spectrometry data identified Y313 as a potential phosphorylation target. Based upon the study of Lin et al. (2001) J. Cell Biol., which still observed tyrosine phosphorylation by Src when using a Cx43 Y247/Y265F mutant, we addressed the possibility of Y313 phosphorylation (pY313) by Src. In vitro Src phosphorylation of purified Cx43CT followed by mass spectroscopy revealed that Src also phosphorylates Y313. This observation was confirmed by repeating the in vitro phosphorylation using different combinations of Cx43CT Y - F mutants and a general anti-pTyr antibody. Next, a phospho-specific antibody was generated to help characterize the importance of pY313. We established an in cyto experimental system by stably expressing Cx43 WT and mutants (Y247F, Y265F, Y313F, Y247/265F, Y247/313F, Y265/313F, or Y247/265/313F) in Cx43-deficient HeLa cells. Cx43 WT and mutants, in the absence of v-Src, localized to the plasma membrane and formed gap junctions. When v-Src was over-expressed, Cx43 WT localized intracellularly, while all of the single and double mutants remained able to form plaques and transfer dye, albeit variable in number and amount, respectively. Complete Src-resistance was only achieved with the Cx43 Y247/265/313F mutant. Furthermore, Cx43 Y265F inhibited the ability of v-Src to phosphorylate Y247 and Y313 as well as phosphorylation at both Y265 and Y313 was necessary to inhibit the Cx43 interaction with Drebrin. Finally, we observed in diseased cardiac tissue, in which Src is active, an increase in intercalated disc and intracellular localized Cx43 pY313.
机译:磷酸化调节Connexin43(CX43)从组装/拆卸以在斑块的偶联中的功能。 SRC是磷酸化CX43(残基Y247和Y265)已知的酪氨酸激酶,并影响间隙结肠间通信。然而,CX43羧基 - 末端(CT)结构域含有另外的酪氨酸残基和蛋白质组学发现质谱数据鉴定Y313作为潜在的磷酸化靶标。基于Lin等人的研究。 (2001)J.细胞BiOl。在使用CX43 Y247 / Y265F突变体时仍观察到SRC的酪氨酸磷酸化,我们通过SRC解决了Y313磷酸化(PY313)的可能性。纯化CX43CT的体外SRC磷酸化,然后质谱显示SRC还磷酸化Y313。通过使用CX43CT Y-&GT的不同组合重复体外磷酸化来证实该观察结果。 F突变体和一般的抗PTYR抗体。接下来,产生磷酸特异性抗体以帮助表征py313的重要性。我们在CX43缺陷型HeLa细胞中稳定地表达CX43 WT和突变体(Y247F,Y265F,Y313F,Y2475F,Y247 / 313F,Y265 / 313F,Y247 / 265 / 3133F,Y247 / 265/3135)来建立一个CyTO实验系统。 CX43 WT和突变体在没有V-SRC的情况下,定位于血浆膜和形成的间隙结。当V-SRC过度表达时,CX43 WT局部地局部化,而所有单和双突变体仍然能够形成斑块和转移染料,尽管数量和量。仅使用CX43 Y247 / 265 / 313F突变体实现完全的SRC抗性。此外,CX43 Y265F抑制V-SRC对磷酸化的能力Y247和Y313以及Y265和Y313的磷酸化是为了抑制CX43与河豚的相互作用。最后,我们在患病心脏组织中观察到,其中SRC是活性的,嵌入盘和细胞内局部化CX43 PY313增加。

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