Distinct roles of ezrin, radixin and moesin in maintaining the plasma membrane localizations and functions of human blood–brain barrier transporters

Yutaro Hoshi, Yasuo Uchida, T. Kuroda, M. Tachikawa, P. Couraud, Takashi Suzuki, T. Terasaki
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引用次数: 16

Abstract

The purpose of this study was to clarify the roles of ERM proteins (ezrin/radixin/moesin) in the regulation of membrane localization and transport activity of transporters at the human blood–brain barrier (BBB). Ezrin or moesin knockdown in a human in vitro BBB model cell line (hCMEC/D3) reduced both BCRP and GLUT1 protein expression levels on the plasma membrane. Radixin knockdown reduced not only BCRP and GLUT1, but also P-gp membrane expression. These results indicate that P-gp, BCRP and GLUT1 proteins are maintained on the plasma membrane via different ERM proteins. Furthermore, moesin knockdown caused the largest decrease of P-gp and BCRP efflux activity among the ERM proteins, whereas GLUT1 influx activity was similarly reduced by knockdown of each ERM protein. To investigate how moesin knockdown reduced P-gp efflux activity without loss of P-gp from the plasma membrane, we examined the role of PKCβI. PKCβI increased P-gp phosphorylation and reduced P-gp efflux activity. Radixin and moesin proteins were detected in isolated human brain capillaries, and their protein abundances were within a 3-fold range, compared with those in hCMEC/D3 cell line. These findings may mean that ezrin, radixin and moesin maintain the functions of different transporters in different ways at the human BBB.
ezrin, radixin和moesin在维持人血脑屏障转运蛋白的质膜定位和功能中的独特作用
本研究的目的是阐明ERM蛋白(ezrin/radixin/moesin)在调节人血脑屏障(BBB)转运蛋白的膜定位和转运活性中的作用。在体外血脑屏障模型细胞系(hCMEC/D3)中,Ezrin或moesin敲低可降低质膜上BCRP和GLUT1蛋白的表达水平。radxin的下调不仅降低了BCRP和GLUT1的表达,还降低了P-gp膜的表达。这些结果表明,P-gp、BCRP和GLUT1蛋白通过不同的ERM蛋白维持在质膜上。此外,moesin敲低引起ERM蛋白中P-gp和BCRP外排活性的最大下降,而GLUT1内流活性也同样因敲低ERM蛋白而降低。为了研究moesin敲除如何在不损失P-gp的情况下降低P-gp外排活性,我们研究了PKCβI的作用。pkc β 1增加P-gp磷酸化,降低P-gp外排活性。在离体人脑毛细血管中检测到Radixin和moesin蛋白,与hCMEC/D3细胞系相比,其蛋白丰度在3倍范围内。这些发现可能意味着ezrin, radixin和moesin在人类血脑屏障中以不同的方式维持不同转运蛋白的功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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