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细菌小 RNA 通过一种不寻常的 Hfq 依赖机制进行的翻译调控。

Translational regulation by bacterial small RNAs via an unusual Hfq-dependent mechanism.

机构信息

Department of Microbiology, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.

出版信息

Nucleic Acids Res. 2018 Mar 16;46(5):2585-2599. doi: 10.1093/nar/gkx1286.

Abstract

In bacteria, the canonical mechanism of translational repression by small RNAs (sRNAs) involves sRNA-mRNA base pairing that occludes the ribosome binding site (RBS), directly preventing translation. In this mechanism, the sRNA is the direct regulator, while the RNA chaperone Hfq plays a supporting role by stabilizing the sRNA. There are a few examples where the sRNA does not directly interfere with ribosome binding, yet translation of the target mRNA is still inhibited. Mechanistically, this non-canonical regulation by sRNAs is poorly understood. Our previous work demonstrated repression of the mannose transporter manX mRNA by the sRNA SgrS, but the regulatory mechanism was unknown. Here, we report that manX translation is controlled by a molecular role-reversal mechanism where Hfq, not the sRNA, is the direct repressor. Hfq binding adjacent to the manX RBS is required for sRNA-mediated translational repression. Translation of manX is also regulated by another sRNA, DicF, via the same non-canonical Hfq-dependent mechanism. Our results suggest that the sRNAs recruit Hfq to its binding site or stabilize the mRNA-Hfq complex. This work adds to the growing number of examples of diverse mechanisms of translational regulation by sRNAs in bacteria.

摘要

在细菌中,小 RNA(sRNA)介导的翻译抑制的典型机制涉及 sRNA-mRNA 碱基配对,该配对会阻断核糖体结合位点(RBS),从而直接阻止翻译。在这种机制中,sRNA 是直接调节剂,而 RNA 伴侣 Hfq 通过稳定 sRNA 发挥支持作用。有一些例子表明,sRNA 并不直接干扰核糖体结合,但靶 mRNA 的翻译仍然受到抑制。从机制上讲,这种 sRNA 的非典型调控还不太清楚。我们之前的工作表明,sRNA SgrS 对甘露糖转运蛋白 manX mRNA 的抑制,但调控机制尚不清楚。在这里,我们报告说,manX 的翻译受分子角色反转机制的控制,其中 Hfq 而不是 sRNA 是直接的抑制剂。Hfq 在 manX RBS 附近的结合对于 sRNA 介导的翻译抑制是必需的。manX 的翻译还受另一种 sRNA DicF 通过相同的非典型依赖 Hfq 的机制调控。我们的结果表明,sRNA 招募 Hfq 到其结合位点或稳定 mRNA-Hfq 复合物。这项工作增加了越来越多的细菌中 sRNA 介导的翻译调控的不同机制的例子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/75e7/5861419/86faf823108d/gkx1286fig1.jpg

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