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Decay-Initiating Endoribonucleolytic Cleavage by RNase Y Is Kept under Tight Control via Sequence Preference and Sub-cellular Localisation

机译:通过序列首选项和亚细胞定位由RNase Y引起的衰变引发的核糖核酸内切裂解受到严格控制

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摘要

Bacteria depend on efficient RNA turnover, both during homeostasis and when rapidly altering gene expression in response to changes. Nevertheless, remarkably few details are known about the rate-limiting steps in targeting and decay of RNA. The membrane-anchored endoribonuclease RNase Y is a virulence factor in Gram-positive pathogens. We have obtained a global picture of Staphylococcus aureus RNase Y sequence specificity using RNA-seq and the novel transcriptome-wide EMOTE method. Ninety-nine endoribonucleolytic sites produced in vivo were precisely mapped, notably inside six out of seven genes whose half-lives increase the most in an RNase Y deletion mutant, and additionally in three separate transcripts encoding degradation ribonucleases, including RNase Y itself, suggesting a regulatory network. We show that RNase Y is required to initiate the major degradation pathway of about a hundred transcripts that are inaccessible to other ribonucleases, but is prevented from promiscuous activity by membrane confinement and sequence preference for guanosines.
机译:在稳态过程中以及响应变化而快速改变基因表达时,细菌都取决于有效的RNA转换。然而,关于RNA靶向和衰变的限速步骤的细节非常少。膜锚定的核糖核酸内切酶RNase Y是革兰氏阳性病原体中的一种毒力因子。我们已经使用RNA-seq和新型转录组范围的EMOTE方法获得了金黄色葡萄球菌RNase Y序列特异性的全局图片。精确定位了体内产生的99个核糖核酸内切酶位点,特别是在RNase Y缺失突变体的半衰期增加最多的七个基因中的六个基因中,另外在编码降解核糖核酸酶的三个单独的转录本中,包括RNase Y本身,都被精确定位。监管网络。我们表明,需要RNase Y来启动主要的降解途径,这是其他核糖核酸无法访问的约一百个转录本的主要降解途径,但是通过膜限制和鸟苷的序列偏好性可以防止混杂活动。

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