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MicL a new σE-dependent sRNA combats envelope stress by repressing synthesis of Lpp the major outer membrane lipoprotein

机译:MicL是一种新的依赖于σE的sRNA它通过抑制LPP(主要的外膜脂蛋白)的合成来抵抗包膜应力

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摘要

In enteric bacteria, the transcription factor σE maintains membrane homeostasis by inducing synthesis of proteins involved in membrane repair and two small regulatory RNAs (sRNAs) that down-regulate synthesis of abundant membrane porins. Here, we describe the discovery of a third σE-dependent sRNA, MicL (mRNA-interfering complementary RNA regulator of Lpp), transcribed from a promoter located within the coding sequence of the cutC gene. MicL is synthesized as a 308-nucleotide (nt) primary transcript that is processed to an 80-nt form. Both forms possess features typical of Hfq-binding sRNAs but surprisingly target only a single mRNA, which encodes the outer membrane lipoprotein Lpp, the most abundant protein of the cell. We show that the copper sensitivity phenotype previously ascribed to inactivation of the cutC gene is actually derived from the loss of MicL and elevated Lpp levels. This observation raises the possibility that other phenotypes currently attributed to protein defects are due to deficiencies in unappreciated regulatory RNAs. We also report that σE activity is sensitive to Lpp abundance and that MicL and Lpp comprise a new σE regulatory loop that opposes membrane stress. Together MicA, RybB, and MicL allow σE to repress the synthesis of all abundant outer membrane proteins in response to stress.
机译:在肠细菌中,转录因子σ E 通过诱导参与膜修复的蛋白的合成和两个下调丰富膜孔蛋白合成的小调节RNA(sRNA)来维持膜稳态。在这里,我们描述了从位于cutC基因编码序列内的启动子转录的第三个σ E 依赖的sRNA MicL(Lpp的mRNA干扰互补RNA调节剂)的发现。 MicL合成为308核苷酸(nt)初级转录本,被加工成80 nt形式。两种形式均具有结合Hfq的sRNA的典型特征,但令人惊讶地仅靶向单个mRNA,该mRNA编码细胞外膜脂蛋白Lpp(细胞中最丰富的蛋白)。我们显示,先前归因于cutC基因失活的铜敏感性表型实际上源自MicL的丧失和Lpp水平升高。该观察结果提出了以下可能性:当前归因于蛋白质缺陷的其他表型是由于未认识到的调节性RNA的缺陷所致。我们还报告说,σ E 活性对Lpp的丰度敏感,MicL和Lpp构成了一个新的σ E 调节环,它与膜应力相反。 MicA,RybB和MicL一起使σ E 可以抑制所有丰富的外膜蛋白对应激的合成。

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