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Phosphorylation at S365 is a gatekeeper event that changes the structure of Cx43 and prevents down-regulation by PKC

机译:S365的磷酸化是一个关守事件它改变了Cx43的结构并防止PKC下调

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摘要

Phosphorylation at unspecified sites is known to regulate the life cycle (assembly, gating, and turnover) of the gap junction protein, Cx43. In this paper, we show that Cx43 is phosphorylated on S365 in cultured cells and heart tissue. Nuclear magnetic resonance structural studies of the C-terminal region of Cx43 with an S365D mutation indicate that it forms a different stable conformation than unphosphorylated wild-type Cx43. Immunolabeling with an antibody specific for Cx43 phosphorylated at S365 shows staining on gap junction structures in heart tissue that is lost upon hypoxia when Cx43 is no longer specifically localized to the intercalated disk. Efficient phosphorylation at S368, an important Cx43 channel regulatory event that increases during ischemia or PKC activation, depends on S365 being unphosphorylated. Thus, phosphorylation at S365 can serve a “gatekeeper” function that may represent a mechanism to protect cells from ischemia and phorbol ester-induced down-regulation of channel conductance.
机译:未知部位的磷酸化可调节间隙连接蛋白Cx43的生命周期(组装,门控和周转)。在本文中,我们显示Cx43在培养的细胞和心脏组织中的S365上被磷酸化。具有S365D突变的Cx43 C端区域的核磁共振结构研究表明,它与未磷酸化的野生型Cx43形成不同的稳定构象。用对S365磷酸化的Cx43特异的抗体进行的免疫标记显示,心脏组织的间隙连接结构上的染色会在缺氧时丢失,因为Cx43不再特异地定位在插入盘上。 S368处的有效磷酸化是一个重要的Cx43通道调节事件,在缺血或PKC激活期间会增加,这取决于S365是否未磷酸化。因此,S365的磷酸化可以起到“守门人”的作用,可以代表一种保护细胞免受缺血和佛波酯诱导的通道传导下调的机制。

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