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阐明能力刺激肽的作用和结构-活性关系。

Elucidating the Role and Structure-Activity Relationships of the Competence-Stimulating Peptide.

机构信息

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

出版信息

ACS Chem Biol. 2021 Dec 17;16(12):2834-2844. doi: 10.1021/acschembio.1c00746. Epub 2021 Dec 3.

Abstract

is an early colonizer of the oral microbiome with documented bactericidal activity against the oral pathogen . has been observed to possess the typical competence regulon found within most oral streptococci; however, the competence-stimulating peptide (CSP) responsible for QS activation and the regulatory role of the competence regulon is yet to be explored. Herein, we have both confirmed the identity of the CSP and utilized a wide range of phenotypic assays to characterize its regulatory role in competence, biofilm formation, and hydrogen peroxide formation. To determine the importance of each amino acid residue in CSP/ComD binding, we performed systematic replacement of amino acid residues within the CSP and developed a luciferase-based reporter system to assess the ability of these mutated analogues to modulate the competence regulon. Additionally, we performed CD analysis on mutated CSP analogues to determine the correlation between the peptide secondary structure and QS activation. To further explore ' potential as a biotherapeutic against infection, lead QS activators and inhibitors were used in interspecies competition assays to assess the effect of QS modulation on interactions between these two species. Lastly, we have documented a lack of -induced cytotoxicity, highlighting the potential of this native flora as a biotherapeutic with minimal health risks.

摘要

是口腔微生物组的早期定植者,具有针对口腔病原体的杀菌活性。已观察到其具有大多数口腔链球菌中发现的典型 感受态调节子;然而,负责 QS 激活的感应肽 (CSP) 及其调控作用尚未得到探索。在此,我们既确认了 CSP 的身份,又利用广泛的表型测定法来表征其在感受态、生物膜形成和过氧化氢形成中的调节作用。为了确定 CSP/ComD 结合中每个氨基酸残基的重要性,我们对 CSP 内的氨基酸残基进行了系统替换,并开发了基于荧光素酶的报告系统来评估这些突变类似物调节感受态调节子的能力。此外,我们对突变 CSP 类似物进行了 CD 分析,以确定肽二级结构与 QS 激活之间的相关性。为了进一步探索 作为 感染生物治疗的潜力,使用先导 QS 激活剂和抑制剂进行种间竞争测定,以评估 QS 调节对这两种物种相互作用的影响。最后,我们记录了缺乏 诱导的细胞毒性,突出了这种天然植物群作为生物治疗剂的潜力,其健康风险最小。

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