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The virulence regulator AbsR in avian pathogenic Escherichia coli has pleiotropic effects on bacterial physiology
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作者 Dongfang Zhao Haobo Zhang +4 位作者 Xinyang Zhang Fengwei Jiang Yijing li Wentong Cai ganwu li 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2024年第2期649-668,共20页
Avian pathogenic Escherichia coli(APEC)belonging to extraintestinal pathogenic E.coli(ExPEC)can cause severe infections in extraintestinal tissues in birds and humans,such as the lungs and blood.MprA(microcin producti... Avian pathogenic Escherichia coli(APEC)belonging to extraintestinal pathogenic E.coli(ExPEC)can cause severe infections in extraintestinal tissues in birds and humans,such as the lungs and blood.MprA(microcin production regulation,locus A,herein renamed AbsR,a blood survival regulator),a member of the MarR(multiple antibiotic resistance regulator)transcriptional regulator family,governs the expression of capsule biosynthetic genes in human ExPEC and represents a promising druggable target for antimicrobials.However,a deep understanding of the AbsR regulatory mechanism as well as its regulon is lacking.In this study,we present a systems-level analysis of the APEC AbsR regulon using ChIP-Seq(chromatin immunoprecipitation sequencing)and RNA-Seq(RNA sequencing)methods.We found that AbsR directly regulates 99 genes and indirectly regulates 667 genes.Furthermore,we showed that:1)AbsR contributes to antiphagocytotic effects by macrophages and virulence in a mouse model for systemic infection by directly activating the capsular gene cluster;2)AbsR positively impacts biofilm formation via direct regulation of the T2SS(type II secretion system)but plays a marginal role in virulence;and 3)AbsR directly upregulates the acid tolerance signaling system EvgAS to withstand acid stress but is dispensable in ExPEC virulence.Finally,our data indicate that the role of AbsR in virulence gene regulation is relatively conserved in ExPEC strains.Altogether,this study provides a comprehensive analysis of the AbsR regulon and regulatory mechanism,and our data suggest that AbsR likely influences virulence primarily through the control of capsule production.Interestingly,we found that AbsR severely represses the expression of the type I-F CRISPR(clustered regularly interspaced short palindromic repeats)-Cas(CRISPR associated)systems,which could have implications in CRISPR biology and application. 展开更多
关键词 avian pathogenic Escherichia coli(APEC) extraintestinal pathogenic Escherichia coli(ExPEC) AbsR RNA-SEQ CHIP-SEQ gene regulation
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尿路致病性大肠杆菌中Ⅰ型限制-修饰系统C5423-5425的鉴定
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作者 李火明 夏颖 +1 位作者 李干武 蔡文通 《微生物学报》 CAS CSCD 北大核心 2021年第8期2457-2468,共12页
【目的】多方面鉴定尿路致病性大肠杆菌中的Ⅰ型限制-修饰(restriction-modification,RM)系统C5423-5425,并揭示其功能与生理意义。【方法】利用Lambda Red重组系统构建CFT073 DNA甲基化转移酶基因缺失株Δc5424;利用单分子实时测序分... 【目的】多方面鉴定尿路致病性大肠杆菌中的Ⅰ型限制-修饰(restriction-modification,RM)系统C5423-5425,并揭示其功能与生理意义。【方法】利用Lambda Red重组系统构建CFT073 DNA甲基化转移酶基因缺失株Δc5424;利用单分子实时测序分析以获得C5424甲基化修饰的位点与基序;利用转化效率试验说明RM系统抵御外源DNA的转化;利用转录组测序和荧光定量RT-PCR鉴定C5424的调控基因;利用软琼脂平板运动试验等方法研究细菌生理功能的变化。【结果】用生物信息学方法鉴定了一个Ⅰ型RM系统;获得了c5424的突变株;鉴定了C5424修饰的靶序列G^(m)AGNNNNNNNGTCA/TG^(m)AC NNNNNNNCTC,并揭示了靶序列在基因组中的分布;C5424系统可以抵御外源DNA的进入;c5424的缺失显著影响17个基因的表达,包括运动相关基因motB和抗活性氯基因rclR等;c5424的缺失显著影响CFT073的运动能力和抗次氯酸的能力。【结论】本文从多方面鉴定了尿路致病性大肠杆菌CFT073中的I型RM系统C5423-5425,这个系统对细菌具有重要的生理意义。本文对研究细菌的表观遗传学具有参考价值。 展开更多
关键词 尿路致病性大肠杆菌 DNA甲基化转移酶 单分子实时测序 限制-修饰系统
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