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内切核糖核酸酶 YbeY 使核糖体成熟,稳定了肠出血性大肠杆菌毒力所必需的 III 型分泌系统转录本。

Ribosome maturation by the endoribonuclease YbeY stabilizes a type 3 secretion system transcript required for virulence of enterohemorrhagic .

机构信息

From the Division of Infection and Immunity, The Roslin Institute, University of Edinburgh, Edinburgh EH25 9RG, Scotland, United Kingdom.

School of Biotechnology and Biomolecular Sciences, University of New South Wales Sydney, Sydney 2033, Australia, and.

出版信息

J Biol Chem. 2018 Jun 8;293(23):9006-9016. doi: 10.1074/jbc.RA117.000300. Epub 2018 Apr 20.

Abstract

Enterohemorrhagic (EHEC) is a significant human pathogen that colonizes humans and its reservoir host, cattle. Colonization requires the expression of a type 3 secretion (T3S) system that injects a mixture of effector proteins into host cells to promote bacterial attachment and disease progression. The T3S system is tightly regulated by a complex network of transcriptional and post-transcriptional regulators. Using transposon mutagenesis, here we identified the operon as being required for normal T3S levels. Deletion analyses localized the regulation to the endoribonuclease YbeY, previously linked to 16S rRNA maturation and small RNA (sRNA) function. Loss of in EHEC had pleiotropic effects on EHEC cells, including reduced motility and growth and cold sensitivity. Using UV cross-linking and RNA-Seq (CRAC) analysis, we identified YbeY-binding sites throughout the transcriptome and discovered specific binding of YbeY to the "neck" and "beak" regions of 16S rRNA but identified no significant association of YbeY with sRNA, suggesting that YbeY modulates T3S by depleting mature ribosomes. In , translation is strongly linked to mRNA stabilization, and subinhibitory concentrations of the translation-initiation inhibitor kasugamycin provoked rapid degradation of a polycistronic mRNA encoding needle filament and needle tip proteins of the T3S system. We conclude that T3S is particularly sensitive to depletion of initiating ribosomes, explaining the inhibition of T3S in the Δ strain. Accessory virulence transcripts may be preferentially degraded in cells with reduced translational capacity, potentially reflecting prioritization in protein production.

摘要

肠出血性大肠杆菌(EHEC)是一种重要的人类病原体,可定植于人类及其储存宿主牛。定植需要表达一种 III 型分泌(T3S)系统,该系统将效应蛋白混合物注入宿主细胞,以促进细菌附着和疾病进展。T3S 系统受转录和转录后调控因子的复杂网络的严密调控。通过转座子诱变,我们发现 operon 对于正常的 T3S 水平是必需的。缺失分析将调控定位到内切核酸酶 YbeY,先前与 16S rRNA 成熟和小 RNA(sRNA)功能相关。EHEC 中 operon 的缺失对 EHEC 细胞有多种影响,包括运动性和生长能力降低以及对冷的敏感性增加。通过 UV 交联和 RNA-Seq(CRAC)分析,我们在整个转录组中鉴定了 YbeY 结合位点,并发现 YbeY 特异性结合 16S rRNA 的“颈部”和“喙部”区域,但未发现 YbeY 与 sRNA 有显著关联,表明 YbeY 通过耗尽成熟核糖体来调节 T3S。在 EHEC 中,翻译与 mRNA 稳定性强烈相关,亚抑制浓度的翻译起始抑制剂 kasugamycin 会迅速降解编码 T3S 系统的针状纤维和针尖蛋白的多顺反子 mRNA。我们得出结论,T3S 对起始核糖体的消耗特别敏感,这解释了 Δ 株中 T3S 的抑制。辅助毒力转录物可能在翻译能力降低的细胞中优先降解,这可能反映了在蛋白质生产中的优先排序。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c99c/5995498/69b4a098d6d5/zbc0241888300001.jpg

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