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保守的非编码RNA ModT协调艰难梭菌的生长和毒力。

The conserved noncoding RNA ModT coordinates growth and virulence in Clostridioides difficile.

作者信息

Lenče Tina, Sulzer Johannes, Andress Kilian, Gribling-Burrer Anne-Sophie, Lamm-Schmidt Vanessa, Barquist Lars, Smyth Redmond P, Faber Franziska

机构信息

University of Würzburg, Faculty of Medicine, Institute of Molecular Infection Biology, Würzburg, Germany.

Helmholtz Institute for RNA-based Infection Research, Helmholtz Centre for Infection Research, Würzburg, Germany.

出版信息

PLoS Biol. 2024 Dec 13;22(12):e3002948. doi: 10.1371/journal.pbio.3002948. eCollection 2024 Dec.

Abstract

Bacterial noncoding RNAs fulfill a variety of cellular functions as catalysts, as scaffolds in protein complexes or as regulators of gene expression. They often exhibit complex tertiary structures that are a key determinant of their biochemical function. Here, we characterize the structured "raiA motif" RNA from Clostridioides difficile, which is conserved in more than 2,500 bacterial species from the phyla Bacillota and Actinomycetota. We show that its transcript abundance and stability in exponentially growing bacteria rivals that of ribosomal RNAs. Deletion of the "raiA motif" RNA is associated with delayed transition into stationary phase, and changes in stationary phase pathways such as spore formation, hence we rename it ModT (modulator of transition phase). Mechanistically, we show that ModT-mediated changes in cellular cyclic di-GMP levels are linked to the pronounced sporulation defect in the modT mutant. Importantly, we show that expression profiles and isoform patterns of ModT are conserved in Clostridium perfringens and Paeniclostridium sordellii, and that these orthologs can functionally complement ModT in C. difficile. Chemical structure probing of ModT in vivo reveals dynamic refolding and provides initial evidence for a potential association of ModT with proteins. In summary, our findings indicate that ModT fulfills a conserved role in regulating growth transitions in bacteria and provide a crucial step towards delineating its molecular mechanism.

摘要

细菌非编码RNA作为催化剂、蛋白质复合物中的支架或基因表达的调节因子,发挥着多种细胞功能。它们通常呈现出复杂的三级结构,这是其生化功能的关键决定因素。在这里,我们对来自艰难梭菌的结构化“raiA基序”RNA进行了表征,该RNA在芽孢杆菌门和放线菌门的2500多种细菌中保守。我们表明,它在指数生长细菌中的转录本丰度和稳定性与核糖体RNA相当。“raiA基序”RNA的缺失与进入稳定期的延迟以及稳定期途径(如孢子形成)的变化有关,因此我们将其重新命名为ModT(过渡期调节剂)。从机制上讲,我们表明ModT介导的细胞环二鸟苷酸水平变化与modT突变体中明显的孢子形成缺陷有关。重要的是,我们表明ModT的表达谱和异构体模式在产气荚膜梭菌和索氏梭菌中是保守的,并且这些直系同源物可以在功能上补充艰难梭菌中的ModT。体内对ModT的化学结构探测揭示了动态重折叠,并为ModT与蛋白质的潜在关联提供了初步证据。总之,我们的发现表明ModT在调节细菌生长转变中发挥着保守作用,并为阐明其分子机制迈出了关键一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5c0/11706538/21112bac245d/pbio.3002948.g001.jpg

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