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核糖核酸酶E、多核苷酸磷酸化酶与冷休克蛋白CsdA之间的物理和功能相互作用:“冷休克降解体”的证据

Physical and functional interactions among RNase E, polynucleotide phosphorylase and the cold-shock protein, CsdA: evidence for a 'cold shock degradosome'.

作者信息

Prud'homme-Généreux Annie, Beran Rudolf K, Iost Isabelle, Ramey C Shane, Mackie George A, Simons Robert W

机构信息

Department of Biochemistry and Molecular Biology, University of British Columbia, Vancouver, BC, V6T 1Z3, Canada.

出版信息

Mol Microbiol. 2004 Dec;54(5):1409-21. doi: 10.1111/j.1365-2958.2004.04360.x.

Abstract

Escherichia coli contains at least five ATP-dependent DEAD-box RNA helicases which may play important roles in macromolecular metabolism, especially in translation and mRNA decay. Here we demonstrate that one member of this family, CsdA, whose expression is induced by cold shock, interacts physically and functionally with RNase E. Three independent approaches show that after a shift of cultures to 15 degrees C, CsdA co-purifies with RNase E and other components of the RNA degradosome. Moreover, functional assays using reconstituted minimal degradosomes prepared from purified components in vitro show that CsdA can fully replace the resident RNA helicase of the RNA degradosome, RhlB. In addition, under these conditions, CsdA displays RNA-dependent ATPase activity. Taken together, our data are consistent with a model in which CsdA accumulates during the early stages of cold acclimatization and subsequently assembles into degradosomes with RNase E synthesized in cold-adapted cultures. These findings show that the RNA degradosome is a flexible macromolecular machine capable of adapting to altered environmental conditions.

摘要

大肠杆菌含有至少五种依赖ATP的DEAD盒RNA解旋酶,它们可能在大分子代谢中发挥重要作用,尤其是在翻译和mRNA降解过程中。在此,我们证明了该家族的一个成员CsdA,其表达受冷休克诱导,在物理和功能上与核糖核酸酶E相互作用。三种独立的方法表明,将培养物转移至15摄氏度后,CsdA与核糖核酸酶E及RNA降解体的其他组分共同纯化。此外,使用体外从纯化组分制备的重组最小降解体进行的功能测定表明,CsdA可以完全替代RNA降解体中的常驻RNA解旋酶RhlB。另外,在这些条件下,CsdA表现出RNA依赖性ATP酶活性。综上所述,我们的数据与以下模型一致:在冷驯化的早期阶段,CsdA积累,随后与冷适应培养物中合成的核糖核酸酶E组装成降解体。这些发现表明,RNA降解体是一种能够适应变化环境条件的灵活大分子机器。

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