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ERp29 Restricts Connexin43 Oligomerization in the Endoplasmic Reticulum

机译:ERp29限制内质网中的connexin43寡聚。

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摘要

Connexin43 (Cx43) is a gap junction protein that forms multimeric channels that enable intercellular communication through the direct transfer of signals and metabolites. Although most multimeric protein complexes form in the endoplasmic reticulum (ER), Cx43 seems to exit from the ER as monomers and subsequently oligomerizes in the Golgi complex. This suggests that one or more protein chaperones inhibit premature Cx43 oligomerization in the ER. Here, we provide evidence that an ER-localized, 29-kDa thioredoxin-family protein (ERp29) regulates Cx43 trafficking and function. Interfering with ERp29 function destabilized monomeric Cx43 oligomerization in the ER, caused increased Cx43 accumulation in the Golgi apparatus, reduced transport of Cx43 to the plasma membrane, and inhibited gap junctional communication. ERp29 also formed a specific complex with monomeric Cx43. Together, this supports a new role for ERp29 as a chaperone that helps stabilize monomeric Cx43 to enable oligomerization to occur in the Golgi apparatus.
机译:连接蛋白43(Cx43)是一种间隙连接蛋白,可形成多聚体通道,从而通过信号和代谢物的直接转移实现细胞间通讯。尽管大多数多聚体蛋白复合物形成在内质网(ER)中,但Cx43似乎以单体形式从ER中退出,并随后在高尔基体中寡聚。这表明一种或多种蛋白伴侣可抑制ER中的Cx43过早寡聚。在这里,我们提供的证据表明,ER定位的29 kDa硫氧还蛋白家族蛋白(ERp29)调节Cx43的运输和功能。干扰ERp29功能会破坏ER中的单体Cx43寡聚化,导致高尔基体中Cx43的积累增加,Cx43向质膜的转运减少,并抑制间隙连接通讯。 ERp29还与单体Cx43形成了特定的复合物。总之,这支持了ERp29作为分子伴侣的新作用,它有助于稳定单体Cx43,从而使高尔基体中发生低聚反应。

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