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在低温下生长的恶臭假单胞菌表现出更高水平的 CrcZ 和 CrcY sRNAs,导致依赖 Crc 的分解代谢物阻遏减少。

Pseudomonas putida growing at low temperature shows increased levels of CrcZ and CrcY sRNAs, leading to reduced Crc-dependent catabolite repression.

机构信息

Departamento de Biotecnología Microbiana, Centro Nacional de Biotecnología, CSIC, Campus UAM, Cantoblanco, 28049 - Madrid, Spain.

出版信息

Environ Microbiol. 2013 Jan;15(1):24-35. doi: 10.1111/j.1462-2920.2012.02708.x. Epub 2012 Feb 23.

DOI:10.1111/j.1462-2920.2012.02708.x
PMID:22360597
Abstract

The Crc protein of Pseudomonas inhibits the expression of genes involved in the transport and assimilation of a number of non-preferred carbon sources when preferred substrates are available, thus coordinating carbon metabolism. Crc acts by binding to target mRNAs, inhibiting their translation. In Pseudomonas putida, the amount of free Crc available is controlled by two sRNAs, CrcY and CrcZ, which bind to and sequester Crc. The levels of these sRNAs vary according to metabolic conditions. Pseudomonas putida grows optimally at 30°C, but can also thrive at 10°C. The present work shows that when cells grow exponentially at 10°C, the repressive effect of Crc on many genes is significantly reduced compared with that seen at 30°C. Total Crc levels were similar at both temperatures, but those of CrcZ and CrcY were significantly higher at 10°C. Therefore, Crc-mediated repression may, at least in part, be reduced at 10°C because the fraction of Crc protein sequestered by CrcZ and CrcY is larger, reducing the amount of free Crc available to bind its targets. This may help P. putida to face cold stress. The results reported might help understanding the behaviour of this bacterium in bioremediation or rhizoremediation strategies at low temperatures.

摘要

当有首选底物时,铜绿假单胞菌的 Crc 蛋白会抑制许多非首选碳源的运输和同化相关基因的表达,从而协调碳代谢。Crc 通过与靶 mRNA 结合来发挥作用,从而抑制其翻译。在铜绿假单胞菌中,游离 Crc 的量受两个 sRNA(CrcY 和 CrcZ)的控制,这两个 sRNA 结合并隔离 Crc。这些 sRNA 的水平根据代谢条件而变化。铜绿假单胞菌在 30°C 下最佳生长,但也能在 10°C 下茁壮成长。本研究表明,当细胞在 10°C 下指数生长时,与 30°C 相比,Crc 对许多基因的抑制作用显著降低。两种温度下的总 Crc 水平相似,但 CrcZ 和 CrcY 的水平在 10°C 时显著升高。因此,Crc 介导的抑制作用至少在部分程度上降低了,因为 CrcZ 和 CrcY 隔离的 Crc 蛋白比例更大,减少了可与靶标结合的游离 Crc 的量。这可能有助于铜绿假单胞菌应对冷应激。报告的结果可能有助于理解该细菌在低温下生物修复或根际修复策略中的行为。

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