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首页> 外文期刊>American Journal of Physiology >Rho GTPase signaling regulates tight junction assembly and protects tight junctions during ATP depletion.
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Rho GTPase signaling regulates tight junction assembly and protects tight junctions during ATP depletion.

机译:Rho GTPase信号传导调节紧密连接的组装并在ATP耗尽期间保护紧密连接。

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Tight junctions control paracellular permeability and cell polarity. Rho GTPase regulates tight junction assembly, and ATP depletion of Madin-Darby canine kidney (MDCK) cells (an in vitro model of renal ischemia) disrupts tight junctions. The relationship between Rho GTPase signaling and ATP depletion was examined. Rho inhibition resulted in decreased localization of zonula occludens-1 (ZO-1) and occludin at cell junctions; conversely, constitutive Rho signaling caused an accumulation of ZO-1 and occludin at cell junctions. Inhibiting Rho before ATP depletion resulted in more extensive loss of junctional components between transfected cells than control junctions, whereas cells expressing activated Rho better maintained junctions during ATP depletion than control cells. ATP depletion and Rho signaling altered phosphorylation signaling mechanisms. ZO-1 and occludin exhibited rapid decreases in phosphoamino acid content following ATP depletion, which was restored on recovery. Expression of Rho mutant proteins in MDCK cells also altered levels of occludin serine/threonine phosphorylation, indicating that occludin is a target for Rho signaling. We conclude that Rho GTPase signaling induces posttranslational effects on tight junction components. Our data also demonstrate that activating Rho signaling protects tight junctions from damage during ATP depletion.
机译:紧密连接控制细胞旁通透性和细胞极性。 Rho GTPase调节紧密连接装配,并且Madin-Darby犬肾(MDCK)细胞(肾缺血的体外模型)的ATP消耗破坏紧密连接。检查了Rho GTPase信号转导与ATP消耗之间的关系。 Rho抑制导致小带闭合蛋白1(ZO-1)和闭合蛋白在细胞连接处的定位降低;相反,组成型Rho信号传导导致ZO-1和occludin在细胞交界处积累。在ATP耗尽之前抑制Rho导致转染细胞之间的连接成分损失比对照连接更为广泛,而表达活化Rho的细胞在ATP消耗期间比对照细胞更好地维持了连接。 ATP耗竭和Rho信号传导改变了磷酸化信号传导机制。 ATP耗尽后,ZO-1和occludin的磷酸氨基酸含量迅速降低,并在恢复时恢复。 Rho突变蛋白在MDCK细胞中的表达也改变了occludin丝氨酸/苏氨酸磷酸化水平,表明occludin是Rho信号转导的靶标。我们得出结论,Rho GTPase信号传导诱导紧密连接组件的翻译后作用。我们的数据还证明,激活Rho信号可以保护紧密连接免受ATP耗尽的损害。

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