首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Caught at its own game: regulatory small RNA inactivated by an inducible transcript mimicking its target.
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Caught at its own game: regulatory small RNA inactivated by an inducible transcript mimicking its target.

机译:陷入困境:被模仿其靶标的可诱导转录物失活的调控小RNA。

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摘要

A relevant, yet little recognized feature of antisense regulation is the possibility of switching roles between regulatory and regulated RNAs. Here we show that induction of a Salmonella gene relies on the conversion of a small RNA from effector to regulatory target. The chiP gene (formerly ybfM), identified and characterized in the present study, encodes a conserved enterobacterial chitoporin required for uptake of chitin-derived oligosaccharides. In the absence of inducer, chiP is kept silent by the action of a constitutively made small RNA, ChiX (formerly SroB, RybC), which pairs with a sequence at the 5' end of chiP mRNA. Silencing is relieved in the presence of chitooligosaccharides due to the accumulation of an RNA that pairs with ChiX and promotes its degradation. Anti-ChiX RNA originates from an intercistronic region of the chb operon, which comprises genes for chitooligosaccharide metabolism and whose transcription is activated in the presence of these sugars. We present evidence suggesting that the chb RNA destabilizes ChiX sRNA by invading the stem of its transcription terminator hairpin. Overall, our findings blur the distinction between effector and target in sRNA regulation, raising the possibility that some of the currently defined targets could actually be inhibitors of sRNA function.
机译:反义调控的一个相关但尚未得到公认的特征是可能在调控RNA和调控RNA之间切换角色。在这里,我们显示沙门氏菌基因的诱导依赖于小RNA从效应子到调控靶标的转化。在本研究中鉴定和表征的chiP基因(以前为ybfM)编码了一种摄取几丁质衍生的寡糖所需的保守性肠细菌Chitoporin。在没有诱导剂的情况下,chiP通过组成型小RNA ChiX(以前称为SroB,RybC)的作用而保持沉默,该小RNA与chiP mRNA 5'端的序列配对。在存在壳寡糖的情况下,由于与ChiX配对并促进其降解的RNA的积累,沉默得以缓解。抗ChiX RNA起源于chb操纵子的顺反子区域,该区域包含壳寡糖代谢基因,其转录在这些糖的存在下被激活。我们目前的证据表明,chb RNA通过入侵其转录终止子发夹的茎来破坏ChiX sRNA的稳定性。总体而言,我们的发现模糊了sRNA调控中效应子与靶标之间的区别,从而增加了一些当前定义的靶标实际上可能是sRNA功能抑制剂的可能性。

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