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顺式作用元件和固氮酶活性在肺炎克雷伯菌固氮酶结构基因mRNA调控稳定性中的重要性。

Importance of cis determinants and nitrogenase activity in regulated stability of the Klebsiella pneumoniae nitrogenase structural gene mRNA.

作者信息

Simon H M, Gosink M M, Roberts G P

机构信息

Department of Bacteriology and the Center for the Study of Nitrogen Fixation, University of Wisconsin-Madison, Madison, Wisconsin 53706, USA.

出版信息

J Bacteriol. 1999 Jun;181(12):3751-60. doi: 10.1128/JB.181.12.3751-3760.1999.

Abstract

The Klebsiella pneumoniae nitrogen fixation (nif) mRNAs are unusually stable, with half-lives of 20 to 30 min under conditions favorable to nitrogen fixation (limiting nitrogen, anaerobiosis, temperatures of 30 degrees C). Addition of O2 or fixed nitrogen or temperature increases to 37 degrees C or more result in the dramatic destabilization of the nif mRNAs, decreasing the half-lives by a factor of 3 to 5. A plasmid expression system, independent of nif transcriptional regulation, was used to define cis determinants required for the regulated stability of the 5.2-kb nifHDKTY mRNA and to test the model suggested by earlier work that NifA is required in trans to stabilize nif mRNA under nif-derepressing conditions. O2 regulation of nifHDKTY mRNA stability is impaired in a plasmid containing a deletion of a 499-bp region of nifH, indicating that a site(s) required for the O2-regulated stability of the mRNA is located within this region. The simple model suggested from earlier work that NifA is required for stabilizing nif mRNA under conditions favorable for nitrogen fixation was disproved, and in its place, a more complicated model involving the sensing of nitrogenase activity as a component of the system regulating mRNA stability is proposed. Analysis of nifY mutants and overexpression suggests a possible involvement of the protein in this sensing process.

摘要

肺炎克雷伯菌的固氮(nif)mRNA异常稳定,在有利于固氮的条件下(限氮、厌氧、30摄氏度)半衰期为20至30分钟。添加氧气、固定氮或温度升高到37摄氏度或更高会导致nif mRNA急剧不稳定,半衰期缩短3至5倍。利用一个独立于nif转录调控的质粒表达系统,来确定5.2 kb的nifHDKTY mRNA受调控稳定性所需的顺式作用元件,并检验早期研究提出的模型,即在nif去阻遏条件下,反式作用需要NifA来稳定nif mRNA。在一个含有nifH基因499 bp区域缺失的质粒中,nifHDKTY mRNA稳定性的氧气调控受损,这表明mRNA氧气调控稳定性所需的位点位于该区域内。早期研究提出的简单模型,即在有利于固氮的条件下稳定nif mRNA需要NifA,被证明是错误的,取而代之的是,提出了一个更复杂的模型,该模型涉及将固氮酶活性的感知作为调节mRNA稳定性系统的一个组成部分。对nifY突变体的分析和过表达表明该蛋白可能参与了这一感知过程。

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本文引用的文献

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