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Folding of newly translated membrane protein CCR5 is assisted by the chaperonin GroEL-GroES

机译:伴侣蛋白GroEL-GroES辅助新翻译的膜蛋白CCR5的折叠

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The in vitro folding of newly translated human CC chemokine receptor type 5 (CCR5), which belongs to the physiologically important family of G protein-coupled receptors (GPCRs), has been studied in a cell-free system supplemented with the surfactant Brij-35. The freshly synthesized CCR5 can spontaneously fold into its biologically active state but only slowly and inefficiently. However, on addition of the GroEL-GroES molecular chaperone system, the folding of the nascent CCR5 was significantly enhanced, as was the structural stability and functional expression of the soluble form of CCR5. The chaperonin GroEL was partially effective on its own, but for maximum efficiency both the GroEL and its GroES lid were necessary. These results are direct evidence for chaperone-assisted membrane protein folding and therefore demonstrate that GroEL-GroES may be implicated in the folding of membrane proteins.
机译:在补充了表面活性剂Brij-35的无细胞系统中,研究了新翻译的人CC趋化因子5型(CCR5)的体外折叠,该受体属于生理上重要的G蛋白偶联受体(GPCR)家族。 。新鲜合成的CCR5可以自发折叠成其生物活性状态,但速度缓慢且效率低下。但是,添加GroEL-GroES分子伴侣系统后,新生CCR5的折叠显着增强,CCR5可溶性形式的结构稳定性和功能性表达也得到明显增强。伴侣GroEL本身就部分有效,但要获得最大效率,GroEL及其GroES盖子都是必需的。这些结果是伴侣辅助膜蛋白折叠的直接证据,因此证明了GroEL-GroES可能与膜蛋白折叠有关。

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