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Psl Produced by Mucoid Contributes to the Establishment of Biofilms and Immune Evasion.黏液样物质产生的Psl有助于生物膜的形成和免疫逃避。
mBio. 2017 Jun 20;8(3):e00864-17. doi: 10.1128/mBio.00864-17.
2
Lack of the PGA exopolysaccharide in Salmonella as an adaptive trait for survival in the host.沙门氏菌中缺乏聚谷氨酸胞外多糖是其在宿主体内存活的一种适应性特征。
PLoS Genet. 2017 May 24;13(5):e1006816. doi: 10.1371/journal.pgen.1006816. eCollection 2017 May.
3
Versatile modes of cellular regulation via cyclic dinucleotides.通过环二核苷酸进行的多种细胞调节模式。
Nat Chem Biol. 2017 Mar 22;13(4):350-359. doi: 10.1038/nchembio.2337.
4
Cholera.霍乱。
Lancet. 2017 Sep 23;390(10101):1539-1549. doi: 10.1016/S0140-6736(17)30559-7. Epub 2017 Mar 13.
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Clostridium difficile disease: Diagnosis, pathogenesis, and treatment update.艰难梭菌疾病:诊断、发病机制及治疗进展
Surgery. 2017 Aug;162(2):325-348. doi: 10.1016/j.surg.2017.01.018. Epub 2017 Mar 6.
6
Cyclic-di-GMP regulates lipopolysaccharide modification and contributes to Pseudomonas aeruginosa immune evasion.环二鸟苷酸调节脂多糖修饰并有助于铜绿假单胞菌免疫逃避。
Nat Microbiol. 2017 Mar 6;2:17027. doi: 10.1038/nmicrobiol.2017.27.
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Cyclic Di-GMP Binding by an Assembly ATPase (PilB2) and Control of Type IV Pilin Polymerization in the Gram-Positive Pathogen Clostridium perfringens.组装型ATP酶(PilB2)对环二鸟苷酸的结合以及革兰氏阳性病原菌产气荚膜梭菌中IV型菌毛聚合的调控
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The ins and outs of cyclic di-GMP signaling in Vibrio cholerae.霍乱弧菌中环状二鸟苷酸信号传导的来龙去脉
Curr Opin Microbiol. 2017 Apr;36:20-29. doi: 10.1016/j.mib.2017.01.002. Epub 2017 Feb 5.
9
Detailed analysis of c-di-GMP mediated regulation of csgD expression in Salmonella typhimurium.鼠伤寒沙门氏菌中c-di-GMP介导的csgD表达调控的详细分析。
BMC Microbiol. 2017 Feb 2;17(1):27. doi: 10.1186/s12866-017-0934-5.
10
Typhimurium and Multidirectional Communication in the Gut.鼠伤寒沙门氏菌与肠道中的多向通讯
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环二鸟苷酸对细菌病原体毒力的调节。

Cyclic-di-GMP regulation of virulence in bacterial pathogens.

机构信息

Department of Cell Biology and Molecular Genetics, University of Maryland at College Park, College Park, MD, USA.

出版信息

Wiley Interdiscip Rev RNA. 2018 Jan;9(1). doi: 10.1002/wrna.1454. Epub 2017 Oct 8.

DOI:10.1002/wrna.1454
PMID:28990312
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5739959/
Abstract

Signaling pathways allow bacteria to adapt to changing environments. For pathogenic bacteria, signaling pathways allow for timely expression of virulence factors and the repression of antivirulence factors within the mammalian host. As the bacteria exit the mammalian host, signaling pathways enable the expression of factors promoting survival in the environment and/or nonmammalian hosts. One such signaling pathway uses the dinucleotide cyclic-di-GMP (c-di-GMP), and many bacterial genomes encode numerous proteins that are responsible for synthesizing and degrading c-di-GMP. Once made, c-di-GMP binds to individual protein and RNA receptors to allosterically alter the macromolecule function to drive phenotypic changes. Each bacterial genome encodes unique sets of genes for c-di-GMP signaling and virulence factors so the regulation by c-di-GMP is organism specific. Recent works have pointed to evidence that c-di-GMP regulates virulence in different bacterial pathogens of mammalian hosts. In this review, we discuss the criteria for determining the contribution of signaling nucleotides to pathogenesis using a well-characterized signaling nucleotide, cyclic AMP (cAMP), in Pseudomonas aeruginosa. Using these criteria, we review the roles of c-di-GMP in mediating virulence and highlight common themes that exist among eight diverse pathogens that cause different diseases through different routes of infection and transmission. WIREs RNA 2018, 9:e1454. doi: 10.1002/wrna.1454 This article is categorized under: RNA in Disease and Development > RNA in Disease.

摘要

信号通路使细菌能够适应不断变化的环境。对于致病性细菌,信号通路可以使其在哺乳动物宿主内及时表达毒力因子并抑制抗毒力因子。当细菌离开哺乳动物宿主时,信号通路可以使促进在环境中和/或非哺乳动物宿主中生存的因子表达。这样的信号通路之一使用二核苷酸环二鸟苷酸(c-di-GMP),许多细菌基因组编码负责合成和降解 c-di-GMP 的众多蛋白质。一旦生成,c-di-GMP 结合到单个蛋白质和 RNA 受体上,通过变构改变大分子的功能以驱动表型变化。每个细菌基因组都为 c-di-GMP 信号和毒力因子编码独特的基因集,因此 c-di-GMP 的调节是特定于生物体的。最近的研究工作指出了证据,表明 c-di-GMP 调节哺乳动物宿主中不同细菌病原体的毒力。在这篇综述中,我们使用假单胞菌中一种特征良好的信号核苷酸环腺苷酸(cAMP)来讨论确定信号核苷酸对发病机制的贡献的标准。使用这些标准,我们综述了 c-di-GMP 在介导毒力中的作用,并强调了导致通过不同感染和传播途径引起不同疾病的八种不同病原体之间存在的共同主题。WIREs RNA 2018, 9:e1454. doi: 10.1002/wrna.1454 本文属于以下分类:RNA 在疾病与发展中 > RNA 在疾病中