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核糖核酸酶E切割塑造了(某种生物)的转录组,并强烈影响光合营养生长。 (注:原文中“of ”这里缺少具体内容)

RNase E cleavage shapes the transcriptome of and strongly impacts phototrophic growth.

作者信息

Förstner Konrad U, Reuscher Carina M, Haberzettl Kerstin, Weber Lennart, Klug Gabriele

机构信息

German National Library of Medicine-Information Center for Life Sciences, Cologne, Germany.

Technical University of Cologne, Faculty for Information and Communication Sciences, Cologne, Germany.

出版信息

Life Sci Alliance. 2018 Aug 1;1(4):e201800080. doi: 10.26508/lsa.201800080. eCollection 2018 Aug.

Abstract

Bacteria adapt to changing environmental conditions by rapid changes in their transcriptome. This is achieved not only by adjusting rates of transcription but also by processing and degradation of RNAs. We applied TIER-Seq (transiently inactivating an endoribonuclease followed by RNA-Seq) for the transcriptome-wide identification of RNase E cleavage sites and of 5' RNA ends, which are enriched when RNase E activity is reduced in . These results reveal the importance of RNase E for the maturation and turnover of mRNAs, rRNAs, and sRNAs in this guanine-cytosine-rich α-proteobacterium, some of the latter have well-described functions in the oxidative stress response. In agreement with this, a role of RNase E in the oxidative stress response is demonstrated. A remarkably strong phenotype of a mutant with reduced RNase E activity was observed regarding the formation of photosynthetic complexes and phototrophic growth, whereas there was no effect on chemotrophic growth.

摘要

细菌通过转录组的快速变化来适应不断变化的环境条件。这不仅通过调节转录速率来实现,还通过RNA的加工和降解来实现。我们应用TIER-Seq(瞬时灭活一种核糖核酸内切酶,随后进行RNA-Seq)对核糖核酸酶E切割位点和5'RNA末端进行全转录组鉴定,当核糖核酸酶E活性在……中降低时,这些位点会富集。这些结果揭示了核糖核酸酶E在这种富含鸟嘌呤-胞嘧啶的α-变形杆菌中对mRNA、rRNA和sRNA的成熟和周转的重要性,其中一些sRNA在氧化应激反应中具有已充分描述的功能。与此一致的是,核糖核酸酶E在氧化应激反应中的作用得到了证实。在光合复合物形成和光养生长方面,观察到核糖核酸酶E活性降低的突变体具有显著强烈的表型,而对化能营养生长没有影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2cea/6238624/9d5f341dfe3e/LSA-2018-00080_Fig1.jpg

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