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PMID: 24415952 已发表 · ppublish 英语

A PNPase dependent CRISPR System in Listeria.

PLoS genetics ·第 10 卷 ·第 1 期 ·2014-06-17

Sesto(Nina),Touchon(Marie),Andrade(José Marques),Kondo(Jiro),Rocha(Eduardo P C),Arraiano(Cecilia Maria),Archambaud(Cristel),Westhof(Éric),Romby(Pascale),Cossart(Pascale)

摘要

The human bacterial pathogen Listeria monocytogenes is emerging as a model organism to study RNA-mediated regulation in pathogenic bacteria. A class of non-coding RNAs called CRISPRs (clustered regularly interspaced short palindromic repeats) has been described to confer bacterial resistance against invading bacteriophages and conjugative plasmids. CRISPR function relies on the activity of CRISPR associated (cas) genes that encode a large family of proteins with nuclease or helicase activities and DNA and RNA binding domains. Here, we characterized a CRISPR element (RliB) that is expressed and processed in the L. monocytogenes strain EGD-e, which is completely devoid of cas genes. Structural probing revealed that RliB has an unexpected secondary structure comprising basepair interactions between the repeats and the adjacent spacers in place of canonical hairpins formed by the palindromic repeats. Moreover, in contrast to other CRISPR-Cas systems identified in Listeria, RliB-CRISPR is ubiquitously present among Listeria genomes at the same genomic locus and is never associated with the cas genes. We showed that RliB-CRISPR is a substrate for the endogenously encoded polynucleotide phosphorylase (PNPase) enzyme. The spacers of the different Listeria RliB-CRISPRs share many sequences with temperate and virulent phages. Furthermore, we show that a cas-less RliB-CRISPR lowers the acquisition frequency of a plasmid carrying the matching protospacer, provided that trans encoded cas genes of a second CRISPR-Cas system are present in the genome. Importantly, we show that PNPase is required for RliB-CRISPR mediated DNA interference. Altogether, our data reveal a yet undescribed CRISPR system whose both processing and activity depend on PNPase, highlighting a new and unexpected function for PNPase in "CRISPRology".

文献信息
期刊
PLoS genetics
期刊简称
PLoS Genet
发表日期
2014-06-17
收录日期
2014-01-13
更新日期
2015-05-15
语言
英语
国家/地区
United States
NLM ID
101239074
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