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PcrX 是一种来自 Rhodobacter sphaeroides puf 操纵子 3'-UTR 的 sRNA,可调节编码细菌光合器官蛋白的 puf 基因的表达。

PcrX, an sRNA derived from the 3'- UTR of the Rhodobacter sphaeroides puf operon modulates expression of puf genes encoding proteins of the bacterial photosynthetic apparatus.

机构信息

Institut für Mikrobiologie und Molekularbiologie, Justus Liebig Universität Giessen, IFZ, Giessen, Germany.

出版信息

Mol Microbiol. 2018 Nov;110(3):325-334. doi: 10.1111/mmi.14076. Epub 2018 Oct 1.

Abstract

Facultative phototrophic bacteria like Rhodobacter sphaeroides can produce ATP by anoxygenic photosynthesis, which is of advantage under conditions with limiting oxygen. However, the simultaneous presence of pigments, light and oxygen leads to the generation of harmful singlet oxygen. In order to avoid this stress situation, the formation of photosynthetic complexes is tightly regulated by light and oxygen signals. In a complex regulatory network several regulatory proteins and the small non-coding RNA PcrZ contribute to the balanced expression of photosynthesis genes. With PcrX this study identifies a second sRNA that is part of this network. The puf operon encodes pigment binding proteins of the light-harvesting I complex (PufBA) and of the reaction center (PufLM), a protein regulating porphyrin flux (PufQ), and a scaffolding protein (PufX). The PcrX sRNA is derived from the 3' UTR of the puf operon mRNA by RNase E-mediated cleavage. It targets the pufX mRNA segment, reduces the half-life of the pufBALMX mRNA and as a consequence affects the level of photosynthetic complexes. By its action PcrX counteracts the increased expression of photosynthesis genes that is mediated by protein regulators and is thus involved in balancing the formation of photosynthetic complexes in response to external stimuli.

摘要

兼性光合细菌,如球形红杆菌,可以进行无光合作用来产生 ATP,这在氧气有限的条件下是有利的。然而,色素、光和氧气的同时存在会产生有害的单线态氧。为了避免这种应激情况,光合作用复合物的形成受到光和氧信号的严格调节。在一个复杂的调控网络中,几种调控蛋白和小非编码 RNA PcrZ 有助于光合作用基因的平衡表达。本研究通过 PcrX 鉴定了第二个 sRNA,它是该网络的一部分。puf 操纵子编码光捕获 I 复合物(PufBA 和 PufLM)的色素结合蛋白、调节卟啉通量的蛋白(PufQ)和支架蛋白(PufX)。PcrX sRNA 由 RNase E 介导的 puf 操纵子 mRNA 3'UTR 切割产生。它靶向 pufX mRNA 片段,降低 pufBALMX mRNA 的半衰期,从而影响光合作用复合物的水平。通过其作用,PcrX 抵消了由蛋白调节剂介导的光合作用基因表达的增加,从而参与了根据外部刺激平衡光合作用复合物形成的过程。

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