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首页> 外文期刊>ACS Chemical Biology >Structure–Activity Relationships of the Competence Stimulating Peptides (CSPs) in Streptococcus pneumoniae Reveal Motifs Critical for Intra-group and Cross-group ComD Receptor Activation
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Structure–Activity Relationships of the Competence Stimulating Peptides (CSPs) in Streptococcus pneumoniae Reveal Motifs Critical for Intra-group and Cross-group ComD Receptor Activation

机译:刺激刺激肽(CSP)在链球菌(CSP)中的结构 - 活性关系术语揭示了基于基于基团和跨组COMD受体激活关键的基序

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摘要

Streptococcus pneumoniae is a highly recombinogenic human pathogen that utilizes the competence stimulating peptide (CSP)-based quorum sensing (QS) circuitry to acquire antibiotic resistance genes from the environment and initiate its attack on the human host. Modulation of QS in this bacterium, either inhibition or activation, can therefore be used to attenuate S. pneumoniae infectivity and slow down pneumococcal resistance development. In this study, we set to determine the molecular mechanism that drives CSP:receptor binding and identify CSP-based QS modulators with distinct activity profiles. To this end, we conducted systematic replacement of the amino acid residues in the two major CSP signals (CSP1 and CSP2) and assessed the ability of the mutated analogs to modulate QS against both cognate and noncognate ComD receptors. We then evaluated the overall 3D structures of these analogs using circular dichroism (CD) to correlate between the structure and function of these peptides. Our CD analysis revealed a strong correlation between α-helicity and bioactivity for both specificity groups (CSP1 and CSP2). Furthermore, we identified the first pan-group QS activator and the most potent group-II QS inhibitor to date. These chemical probes can be used to study the role of QS in S. pneumoniae and as scaffolds for the design of QS-based anti-infective therapeutics against S. pneumoniae infections.]]>
机译:<![cdata [ src ='http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/acbcct/2017/acbcct.2017.issue-4/acschembio.7b000007/20170419/19/2019/10图像/介质/ CB-2017-000079_0008.gif“> 链球菌肺炎链球菌是一种高度重组的人病原体,其利用能力刺激肽(CSP)基础的Quorum感测(QS)电路来获取抗生素抗性基因来自环境并启动其对人类主人的攻击。因此,可以使用抑制或活化的QS在这种细菌中的调节来衰减。肺炎 - 肺炎肺炎感染率和减缓肺炎球菌耐药性。在这项研究中,我们设定以确定驱动CSP的分子机制:受体结合和鉴定基于CSP的QS调制器,具有不同的活性曲线。为此,我们对两种主要CSP信号(CSP1和CSP2)中的氨基酸残基进行了系统的替代,并评估了突变的类似物调节Qs对同学和非认知COMD受体的能力。然后,我们使用圆形二色性(CD)评估这些类似物的总体3D结构,以与这些肽的结构和功能之间的相关性。我们的CD分析显示了特异性群体(CSP1和CSP2)的α-肝与生物活性之间的强相关性。此外,我们迄今为止鉴定了第一个PAN-GROUP QS活化剂和最有效的群体-II QS抑制剂。这些化学探针可用于研究QS在 s中的作用。肺炎和肺炎和作为QS的抗感染治疗剂的支架对抗。肺炎感染。]>

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  • 来源
    《ACS Chemical Biology》 |2017年第4期|共11页
  • 作者单位

    Department of Chemistry University of Nevada Reno 1664 North Virginia Street Reno Nevada 89557 United States;

    Department of Chemistry University of Nevada Reno 1664 North Virginia Street Reno Nevada 89557 United States;

    Department of Chemistry University of Nevada Reno 1664 North Virginia Street Reno Nevada 89557 United States;

    Department of Chemistry University of Nevada Reno 1664 North Virginia Street Reno Nevada 89557 United States;

    Department of Chemistry University of Nevada Reno 1664 North Virginia Street Reno Nevada 89557 United States;

    Department of Chemistry University of Nevada Reno 1664 North Virginia Street Reno Nevada 89557 United States;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
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