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Mechanistic insights into type I toxin antitoxin systems in Helicobacter pylori: the importance of mRNA folding in controlling toxin expression

机译:在幽门螺杆菌中Intexin抗毒素系统中的机械洞察力:mRNA折叠在控制毒素表达中的重要性

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摘要

Type I toxin-antitoxin (TA) systems have been identified in a wide range of bacterial genomes. Here, we report the characterization of a new type I TA system present on the chromosome of the major human gastric pathogen, Helicobacter pylori. We show that the aapA1 gene encodes a 30 amino acid peptide whose artificial expression in H. pylori induces cell death. The synthesis of this toxin is prevented by the transcription of an antitoxin RNA, named IsoA1, expressed on the opposite strand of the toxin gene. We further reveal additional layers of post-transcriptional regulation that control toxin expression: (i) transcription of the aapA1 gene generates a full-length transcript whose folding impedes translation (ii) a 3' end processing of this message generates a shorter transcript that, after a structural rearrangement, becomes translatable (iii) but this rearrangement also leads to the formation of two stem-loop structures allowing formation of an extended duplex with IsoA1 via kissing-loop interactions. This interaction ensures both the translation inhibition of the AapA1 active message and its rapid degradation by RNase III, thus preventing toxin synthesis under normal growth conditions. Finally, a search for homologous mRNA structures identifies similar TA systems in a large number of Helicobacter and Campylobacter genomes.
机译:型I型毒素 - 抗毒素(TA)系统已在各种细菌基因组中鉴定。在这里,我们报告了主要人体胃病原体幽门螺杆菌染色体上存在的新类型I TA系统的表征。我们表明AAPA1基因编码了30个氨基酸肽,其人工表达在H. Pylori诱导细胞死亡。通过在毒素基因的相对股线上表达的抗毒素RNA的转录来防止该毒素的合成。我们进一步揭示了控制毒素表达的额外转录后调节层:(i)AAPA1基因的转录产生全长转录物,其折叠阻抗翻译(ii)这条消息的3'结束处理产生了更短的成绩单,在结构重排之后,变得可翻译(III),但这种重排也导致形成两个茎环结构,允许通过接吻环相互作用形成与ISOA1的延伸双链体形成。该相互作用确保了AAPA1活性信息的平移抑制及其RNase III的快速降解,从而在正常生长条件下防止毒素合成。最后,对同源mRNA结构的搜索鉴定了大量幽灵杆菌和弯曲杆菌基因组中的类似TA系统。

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