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首页> 外文期刊>American Journal of Physiology >High turnover of ezrin T567 phosphorylation: conformation, activity, and cellular function.
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High turnover of ezrin T567 phosphorylation: conformation, activity, and cellular function.

机译:ezrin T567磷酸化的高周转率:构象,活性和细胞功能。

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In its dormant state, the membrane cytoskeletal linker protein ezrin takes on a NH(2) terminal-to-COOH terminal (N-C) binding conformation. In vitro evidence suggests that eliminating the N-C binding conformation by Thr(567) phosphorylation leads to ezrin activation. Here, we found for resting gastric parietal cells that the levels of ezrin phosphorylation on Thr(567) are low and can be increased to a small extent ( approximately 40%) by stimulating secretion via the cAMP pathway. Treatment of cells with protein phosphatase inhibitors led to a rapid, dramatic increase in Thr(567) phosphorylation by 400% over resting levels, prompting the hypothesis that ezrin activity is regulated by turnover of phosphorylation on Thr(567). In vitro and in vivo fluorescence resonance energy transfer analysis demonstrated that Thr(567) phosphorylation opens the N-C interaction. However, even in the closed conformation, ezrin localizes to membranes by an exposed NH(2) terminal binding site. Importantly, the opened phosphorylated form of ezrin more readily cosediments with F-actin and binds more tightly to membrane than the closed forms. Furthermore, fluorescence recovery after photobleaching analysis in live cells showed that the Thr567Asp mutant had longer recovery times than the wild type or the Thr567Ala mutant, indicating the Thr(567)-phosphorylated form of ezrin is tightly associated with F-actin and the membrane, restricting normal activity. These data demonstrate and emphasize the functional importance of reversible phosphorylation of ezrin on F-actin binding. A novel model is proposed whereby ezrin and closely associated kinase and phosphatase proteins represent a motor complex to maintain a dynamic relationship between the varying membrane surface area and filamentous actin length.
机译:处于休眠状态的膜细胞骨架连接蛋白ezrin具有NH(2)末端至COOH末端(N-C)结合构象。体外证据表明,通过Thr(567)磷酸化消除N-C结合构象会导致ezrin活化。在这里,我们发现对于静息的胃壁细胞,Thr(567)上的ezrin磷酸化水平较低,并且可以通过刺激cAMP途径的分泌而少量增加(约40%)。蛋白磷酸酶抑制剂对细胞的处理导致Thr(567)磷酸化比静止水平迅速,显着增加400%,这提示了ezrin活性受Thr(567)磷酸化代谢调节的假设。体外和体内荧光共振能量转移分析表明,Thr(567)磷酸化打开了N-C相互作用。但是,即使在封闭的构象中,ezrin仍通过暴露的NH(2)末端结合位点定位在膜上。重要的是,与封闭形式相比,开放的ezrin磷酸化形式更容易与F-肌动蛋白共沉淀,并且更紧密地与膜结合。此外,活细胞经过光漂白分析后的荧光恢复结果表明,Thr567Asp突变体的恢复时间比野生型或Thr567Ala突变体长,这表明ezrin的Thr(567)磷酸化形式与F-肌动蛋白和膜紧密相关,限制正常活动。这些数据证明并强调了ezrin对F-肌动蛋白结合的可逆磷酸化的功能重要性。提出了一种新颖的模型,其中ezrin和紧密相关的激酶和磷酸酶蛋白代表了一种运动复合物,以维持变化的膜表面积和丝状肌动蛋白长度之间的动态关系。

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