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[固定化C端的萤火虫荧光素酶多肽链折叠]

[Folding of the firefly luciferase polypeptide chain with immobilized C-terminus].

作者信息

Svetlov M S, Kolb V A, Spirin A S

出版信息

Mol Biol (Mosk). 2007 Jan-Feb;41(1):96-102.

Abstract

Refolding of Photinus pyralis firefly luciferase from a denatured state is a slow process; its rate and productivity depend on molecular chaperones of the Hsp70 family. In contrast, cotranslational folding of the enzyme is fast and productive in the absence of chaperones [Svetlov et al., 2006. Protein Sci. 15, 242-247]. During cotranslational folding, the C-termini of polypeptides are bound to massive particles - ribosomes. The question arises whether the immobilization of the polypeptide C-terminus on a massive particle promotes the folding. To test this experimentally, the luciferase with oligohistidine tag at its C-terminus was prepared. This allowed us to immobilize the protein C-terminal segment on chelating Sepharose beads. Here we show that both immobilized and free chains of urea-denatured enzyme refold with the same rate. At the same time, the immobilization of luciferase results in higher refolding yield due to prevention of inter-molecular aggregation. Chaperones of the Hsp70 family promote refolding of both immobilized and free luciferase polypeptides. The results presented here suggest that the high rate of cotranslational folding is not caused by the immobilization of polypeptide C-termini by itself, but is rather due to a favorable start conformation of the growing polypeptide in the peptidyl-transferase center of the ribosome and/or the strongly vectorial character of the folding from N- to C-terminus during polypeptide synthesis.

摘要

从变性状态重新折叠萤火虫荧光素酶是一个缓慢的过程;其速率和产量取决于Hsp70家族的分子伴侣。相比之下,在没有伴侣蛋白的情况下,该酶的共翻译折叠快速且高效[斯韦特洛夫等人,2006年。《蛋白质科学》。第15卷,第242 - 247页]。在共翻译折叠过程中,多肽的C末端与大量颗粒——核糖体结合。问题在于多肽C末端固定在大量颗粒上是否促进折叠。为了通过实验验证这一点,制备了在其C末端带有寡组氨酸标签的荧光素酶。这使我们能够将蛋白质C末端片段固定在螯合琼脂糖珠上。在这里我们表明,尿素变性酶的固定链和游离链以相同的速率重新折叠。同时,荧光素酶的固定由于防止分子间聚集而导致更高的重新折叠产率。Hsp70家族的伴侣蛋白促进固定化和游离荧光素酶多肽的重新折叠。此处呈现的结果表明,共翻译折叠的高速率并非由多肽C末端自身的固定所导致,而是相当程度上归因于核糖体肽基转移酶中心中正在生长的多肽的有利起始构象和/或多肽合成过程中从N末端到C末端折叠的强烈方向性。

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