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DnaK和DnaJ促进了折叠过程,并减少了在大肠杆菌中过表达的镁转运蛋白CorA的包涵体形成。

DnaK and DnaJ facilitated the folding process and reduced inclusion body formation of magnesium transporter CorA overexpressed in Escherichia coli.

作者信息

Chen Yong, Song Jinmei, Sui Sen-fang, Wang Da-Neng

机构信息

Skirball Institute of Biomolecular Medicine and Department of Cell Biology, New York University School of Medicine, 540 First Avenue, New York, NY 10016, USA.

出版信息

Protein Expr Purif. 2003 Dec;32(2):221-31. doi: 10.1016/S1046-5928(03)00233-X.

Abstract

Overexpression of CorA, the major magnesium transporter from bacterial inner membrane, in Escherichia coli resulted in the synthesis of 60mg of protein per liter of culture, most of which however was in the form of inclusion bodies. The levels of inclusion body formation were reduced by lowering the cell culture temperature. To dissect CorA inclusion body formation and the folding process involved, we co-expressed the protein with various chaperones and other folding modulators. Expression of DnaK/DnaJ (Hsp70) prevented inclusion bodies from forming and resulted in the integration of more CorA into the membrane. GroEL/GroES (Hsp60/Hsp10) were less effective at reducing CorA inclusion body formation. Co-expression with either Ffh/4.5S-RNA, the signal recognition particle, or SecA, the ATPase that drives protein insertion into the membrane, had little effect on CorA folding. These results indicate: (1) that CorA inclusion bodies form immediately after synthesis at 37 degrees C, (2) that CorA solubility in the cytosol can be increased by co-expressing a chaperone system, (3) membrane targeting is probably not a rate-limiting factor, and (4) that membrane insertion becomes a limitation only when large amounts of soluble CorA are present in the cytosol. These co-expression systems can be used for producing other membrane proteins in large quantities.

摘要

细菌内膜主要镁转运蛋白CorA在大肠杆菌中的过表达,导致每升培养物合成60毫克蛋白质,然而其中大部分是以包涵体的形式存在。通过降低细胞培养温度可减少包涵体的形成水平。为了剖析CorA包涵体的形成及相关折叠过程,我们将该蛋白与各种伴侣蛋白和其他折叠调节剂共表达。DnaK/DnaJ(热休克蛋白70)的表达可防止包涵体形成,并使更多的CorA整合到膜中。GroEL/GroES(热休克蛋白60/热休克蛋白10)在减少CorA包涵体形成方面效果较差。与信号识别颗粒Ffh/4.5S-RNA或驱动蛋白质插入膜的ATP酶SecA共表达,对CorA折叠几乎没有影响。这些结果表明:(1)CorA包涵体在37℃合成后立即形成;(2)通过共表达伴侣蛋白系统可提高CorA在细胞质中的溶解度;(3)膜靶向可能不是限速因素;(4)只有当细胞质中存在大量可溶性CorA时膜插入才成为限制因素。这些共表达系统可用于大量生产其他膜蛋白。

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