Desgranges Emma, Barrientos Laura, Herrgott Lucas, Marzi Stefano, Toledo-Arana Alejandro, Moreau Karen, Vandenesch François, Romby Pascale, Caldelari Isabelle
Architecture et Réactivité de l'ARN, UPR9002, CNRS, Université de Strasbourg, Strasbourg, France.
Instituto de Agrobiotecnología (IdAB), CSIC-UPNA-GN, Mutilva, Navarra, Spain.
Mol Microbiol. 2022 Jan;117(1):193-214. doi: 10.1111/mmi.14845. Epub 2021 Nov 25.
Staphylococcus aureus RsaG is a 3'-untranslated region (3'UTR) derived sRNA from the conserved uhpT gene encoding a glucose-6-phosphate (G6P) transporter expressed in response to extracellular G6P. The transcript uhpT-RsaG undergoes degradation from 5'- to 3'-end by the action of the exoribonucleases J1/J2, which are blocked by a stable hairpin structure at the 5'-end of RsaG, leading to its accumulation. RsaG together with uhpT is induced when bacteria are internalized into host cells or in the presence of mucus-secreting cells. Using MS2-affinity purification coupled with RNA sequencing, several RNAs were identified as targets including mRNAs encoding the transcriptional factors Rex, CcpA, SarA, and the sRNA RsaI. Our data suggested that RsaG contributes to the control of redox homeostasis and adjusts metabolism to changing environmental conditions. RsaG uses different molecular mechanisms to stabilize, degrade, or repress the translation of its mRNA targets. Although RsaG is conserved only in closely related species, the uhpT 3'UTR of the ape pathogen S. simiae harbors an sRNA, whose sequence is highly different, and which does not respond to G6P levels. Our results hypothesized that the 3'UTRs from UhpT transporter encoding mRNAs could have rapidly evolved to enable adaptation to host niches.
金黄色葡萄球菌RsaG是一种源自3'非翻译区(3'UTR)的小RNA,来自保守的uhpT基因,该基因编码一种葡萄糖-6-磷酸(G6P)转运蛋白,其表达受细胞外G6P的调控。转录本uhpT-RsaG在核酸外切酶J1/J2的作用下从5'端到3'端发生降解,但RsaG 5'端的稳定发夹结构会阻止这种降解,从而导致其积累。当细菌内化到宿主细胞中或存在分泌黏液的细胞时,RsaG与uhpT一起被诱导表达。利用MS2亲和纯化结合RNA测序,鉴定出了几个RNA作为靶标,包括编码转录因子Rex、CcpA、SarA的mRNA以及小RNA RsaI。我们的数据表明,RsaG有助于控制氧化还原稳态,并根据不断变化的环境条件调整新陈代谢。RsaG利用不同的分子机制来稳定、降解或抑制其mRNA靶标的翻译。虽然RsaG仅在密切相关的物种中保守,但猿类病原体猕猴葡萄球菌的uhpT 3'UTR含有一种小RNA,其序列差异很大,且对G6P水平无反应。我们的结果推测来自UhpT转运蛋白编码mRNA的3'UTR可能已经快速进化,以适应宿主生态位。