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本文引用的文献

1
Phenotypic and genotypic analyses of Neisseria gonorrhoeae isolates that express frequently recovered PorB PIA variable region types suggest that certain P1a porin sequences confer a selective advantage for urogenital tract infection.对表达常见回收的PorB PIA可变区类型的淋病奈瑟菌分离株进行的表型和基因型分析表明,某些P1a孔蛋白序列赋予了泌尿生殖道感染的选择性优势。
Infect Immun. 2008 Aug;76(8):3700-9. doi: 10.1128/IAI.00265-08. Epub 2008 Jun 9.
2
Regulation of the MtrC-MtrD-MtrE efflux-pump system modulates the in vivo fitness of Neisseria gonorrhoeae.MtrC-MtrD-MtrE外排泵系统的调控调节淋病奈瑟菌的体内适应性。
J Infect Dis. 2007 Dec 15;196(12):1804-12. doi: 10.1086/522964.
3
Differential regulation of ponA and pilMNOPQ expression by the MtrR transcriptional regulatory protein in Neisseria gonorrhoeae.淋病奈瑟菌中MtrR转录调节蛋白对ponA和pilMNOPQ表达的差异调节
J Bacteriol. 2007 Jul;189(13):4569-77. doi: 10.1128/JB.00286-07. Epub 2007 May 4.
4
Summary of notifiable diseases --- United States, 2005.2005年美国法定传染病汇总
MMWR Morb Mortal Wkly Rep. 2007 Mar 30;54(53):1-92.
5
Molecular mechanisms of antibacterial multidrug resistance.抗菌多药耐药的分子机制
Cell. 2007 Mar 23;128(6):1037-50. doi: 10.1016/j.cell.2007.03.004.
6
Increasing resistance to ciprofloxacin and other antibiotics in Neisseria gonorrhoeae from East Java and Papua, Indonesia, in 2004 - implications for treatment.2004年印度尼西亚东爪哇省和巴布亚省淋病奈瑟菌对环丙沙星及其他抗生素的耐药性增加——对治疗的影响
Int J STD AIDS. 2006 Dec;17(12):810-2. doi: 10.1258/095646206779307595.
7
Alpha-2,3-sialyltransferase enhances Neisseria gonorrhoeae survival during experimental murine genital tract infection.α-2,3-唾液酸转移酶在实验性小鼠生殖道感染期间增强淋病奈瑟菌的存活率。
Infect Immun. 2006 Jul;74(7):4094-103. doi: 10.1128/IAI.00433-06.
8
Summary of notifiable diseases--United States, 2004.2004年美国法定传染病摘要
MMWR Morb Mortal Wkly Rep. 2006 Jun 16;53(53):1-79.
9
In vivo selection for Neisseria gonorrhoeae opacity protein expression in the absence of human carcinoembryonic antigen cell adhesion molecules.在缺乏人癌胚抗原细胞粘附分子的情况下,对淋病奈瑟菌不透明蛋白表达进行体内选择。
Infect Immun. 2006 May;74(5):2965-74. doi: 10.1128/IAI.74.5.2965-2974.2006.
10
Molecular epidemiology of Neisseria gonorrhoeae- identification of the first presumed Swedish transmission chain of an azithromycin-resistant strain.淋病奈瑟菌的分子流行病学——首例推测的瑞典阿奇霉素耐药菌株传播链的鉴定
APMIS. 2006 Jan;114(1):67-71. doi: 10.1111/j.1600-0463.2006.apm_332.x.

导致淋病奈瑟菌MtrC-MtrD-MtrE外排泵系统去阻遏的临床相关突变赋予不同水平的抗菌药物耐药性和体内适应性。

Clinically relevant mutations that cause derepression of the Neisseria gonorrhoeae MtrC-MtrD-MtrE Efflux pump system confer different levels of antimicrobial resistance and in vivo fitness.

作者信息

Warner Douglas M, Shafer William M, Jerse Ann E

机构信息

Department of Microbiology and Immunology, F. Edward Hèbert School of Medicine, Uniformed Services University, Bethesda, MD, USA.

出版信息

Mol Microbiol. 2008 Oct;70(2):462-78. doi: 10.1111/j.1365-2958.2008.06424.x. Epub 2008 Aug 27.

DOI:10.1111/j.1365-2958.2008.06424.x
PMID:18761689
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2602950/
Abstract

The MtrC-MtrD-MtrE efflux pump system confers resistance to macrolide antibiotics and antimicrobial substances of the host innate defence. Clinical isolates with increased resistance to erythromycin and azithromycin frequently harbour mutations in the mtrR structural gene, which encodes a repressor of the mtrCDE operon, or the mtrR promoter region. The MtrC-MtrD-MtrE system is important for gonococcal survival in the murine genital tract, and derepression of the mtrCDE operon via deletion of mtrR confers increased fitness in vivo. Here we compared isogenic strains with naturally occurring mtrR locus mutations for differences in mtrCDE expression and pump-related phenotypes. Mutations upstream of mtrC, including those within the MtrR binding region and a novel mutation that increases mtrC RNA stability conferred the highest levels of derepression as measured by mtrCDE transcription and resistance to antibiotics, progesterone and antimicrobial peptides. In contrast, mutations within the mtrR coding sequence conferred low to intermediate levels of derepression. In vivo, the mtr mutants were more fit than the wild-type strain, the degree to which paralleled in vitro resistance gradients. These studies establish a hierarchy of mtrR locus mutations with regard to regulation of pump efflux, and suggest selection for more derepressed mutants may occur during mixed infections.

摘要

MtrC-MtrD-MtrE外排泵系统赋予淋病奈瑟菌对大环内酯类抗生素及宿主天然防御抗菌物质的抗性。对红霉素和阿奇霉素耐药性增强的临床分离株,其mtrR结构基因(编码mtrCDE操纵子的阻遏物)或mtrR启动子区域常发生突变。MtrC-MtrD-MtrE系统对淋病奈瑟菌在小鼠生殖道内存活很重要,通过缺失mtrR使mtrCDE操纵子去阻遏可增强其体内适应性。在此,我们比较了具有天然mtrR基因座突变的同基因菌株在mtrCDE表达及泵相关表型上的差异。mtrC上游的突变,包括MtrR结合区域内的突变以及一个增加mtrC RNA稳定性的新突变,通过mtrCDE转录及对抗生素、孕酮和抗菌肽的抗性测定,显示出最高水平的去阻遏。相比之下,mtrR编码序列内的突变导致低至中等水平的去阻遏。在体内,mtr突变体比野生型菌株更具适应性,其程度与体外耐药梯度平行。这些研究确立了mtrR基因座突变在泵外排调节方面的等级关系,并表明在混合感染期间可能会选择去阻遏程度更高的突变体。