首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Regulation mechanism of ERM (ezrin/radixin/moesin) protein/plasma membrane association: possible involvement of phosphatidylinositol turnover and Rho-dependent signaling pathway
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Regulation mechanism of ERM (ezrin/radixin/moesin) protein/plasma membrane association: possible involvement of phosphatidylinositol turnover and Rho-dependent signaling pathway

机译:ERM(ezrin / radixin / moesin)蛋白/质膜结合的调节机制:磷脂酰肌醇更新和Rho依赖信号通路的可能参与

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摘要

The ERM proteins, ezrin, radixin, and moesin, are involved in the actin filament/plasma membrane interaction as cross-linkers. CD44 has been identified as one of the major membrane binding partners for ERM proteins. To examine the CD44/ERM protein interaction in vitro, we produced mouse ezrin, radixin, moesin, and the glutathione-S- transferase (GST)/CD44 cytoplasmic domain fusion protein (GST-CD44cyt) by means of recombinant baculovirus infection, and constructed an in vitro assay for the binding between ERM proteins and the cytoplasmic domain of CD44. In this system, ERM proteins bound to GST-CD44cyt with high affinity (Kd of moesin was 9.3 +/- 1.6nM) at a low ionic strength, but with low affinity at a physiological ionic strength. However, in the presence of phosphoinositides (phosphatidylinositol [PI], phosphatidylinositol 4-monophosphate [4-PIP], and phosphatidylinositol 4.5-bisphosphate [4,5-PIP2]), ERM proteins bound with a relatively high affinity to GST-CD44cyt even at a physiological ionic strength: 4,5- PIP2 showed a marked effect (Kd of moesin in the presence of 4,5-PIP2 was 9.3 +/- 4.8 nM). Next, to examine the regulation mechanism of CD44/ERM interaction in vivo, we reexamined the immunoprecipitated CD44/ERM complex from BHK cells and found that it contains Rho-GDP dissociation inhibitor (GDI), a regulator of Rho GTPase. We then evaluated the involvement of Rho in the regulation of the CD44/ERM complex formation. When recombinant ERM proteins were added and incubated with lysates of cultured BHK cells followed by centrifugation, a portion of the recombinant ERM proteins was recovered in the insoluble fraction. This binding was enhanced by GTP gamma S and markedly suppressed by C3 toxin, a specific inhibitor of Rho, indicating that the GTP form of Rho in the lysate is required for this binding. A mAb specific for the cytoplasmic domain of CD44 also markedly suppressed this binding, identifying most of the binding partners for exogenous ERM proteins in the insoluble fraction as CD44. Consistent with this binding analysis, in living BHK cells treated with C3 toxin, most insoluble ERM proteins moved to soluble compartments in the cytoplasm, leaving CD44 free from ERM. These findings indicate that Rho regulates the CD44/ERM complex formation in vivo and that the phosphatidylinositol turnover may be involved in this regulation mechanism.
机译:ERM蛋白ezrin,radixin和moesin作为交联剂参与肌动蛋白丝/质膜的相互作用。 CD44已被确定为ERM蛋白的主要膜结合伴侣之一。为了检测CD44 / ERM蛋白在体外的相互作用,我们通过重组杆状病毒感染产生了小鼠ezrin,radixin,moesin和谷胱甘肽-S-转移酶(GST)/ CD44细胞质域融合蛋白(GST-CD44cyt),并构建了ERM蛋白与CD44胞质结构域结合的体外测定。在该系统中,ERM蛋白在低离子强度下以高亲和力(肌动蛋白Kd为9.3 +/- 1.6nM)与GST-CD44cyt结合,但在生理离子强度下却以低亲和力结合。但是,在存在磷酸肌醇(磷脂酰肌醇[PI],磷脂酰肌醇4-单磷酸[4-PIP]和磷脂酰肌醇4.5-双磷酸[4,5-PIP2])的情况下,ERM蛋白甚至对GST-CD44cyt都具有较高的亲和力在生理离子强度下:4,5-PIP2显示出明显的作用(在存在4,5-PIP2的情况下,肌球蛋白的Kd为9.3 +/- 4.8nM)。接下来,为了检查体内CD44 / ERM相互作用的调节机制,我们重新检查了来自BHK细胞的免疫沉淀CD44 / ERM复合物,发现它含有Rho-GTPase调节剂Rho-GDP解离抑制剂(GDI)。然后,我们评估了Rho在CD44 / ERM复合物形成调控中的参与。当添加重组ERM蛋白并与培养的BHK细胞的裂解物一起温育,然后离心时,一部分重组ERM蛋白以不溶级分回收。这种结合被GTPγS增强,并被Rho的特异性抑制剂C3毒素显着抑制,表明该结合需要裂解物中Rho的GTP形式。对CD44胞质域具有特异性的mAb也显着抑制了这种结合,从而将不溶级分中外源ERM蛋白的大多数结合伴侣鉴定为CD44。与此结合分析一致,在用C3毒素处理的活BHK细胞中,大多数不溶性ERM蛋白移至细胞质中的可溶区室,从而使CD44不含ERM。这些发现表明,Rho在体内调节CD44 / ERM复合物的形成,并且磷脂酰肌醇的转换可能参与该调节机制。

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