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Inhibition of Competence Development Horizontal Gene Transfer and Virulence in Streptococcus pneumoniae by a Modified Competence Stimulating Peptide

机译:修饰的能力刺激肽对肺炎链球菌能力发展水平基因转移和毒力的抑制作用

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摘要

Competence stimulating peptide (CSP) is a 17-amino acid peptide pheromone secreted by Streptococcus pneumoniae. Upon binding of CSP to its membrane-associated receptor kinase ComD, a cascade of signaling events is initiated, leading to activation of the competence regulon by the response regulator ComE. Genes encoding proteins that are involved in DNA uptake and transformation, as well as virulence, are upregulated. Previous studies have shown that disruption of key components in the competence regulon inhibits DNA transformation and attenuates virulence. Thus, synthetic analogues that competitively inhibit CSPs may serve as attractive drugs to control pneumococcal infection and to reduce horizontal gene transfer during infection. We performed amino acid substitutions on conserved amino acid residues of CSP1 in an effort to disable DNA transformation and to attenuate the virulence of S. pneumoniae. One of the mutated peptides, CSP1-E1A, inhibited development of competence in DNA transformation by outcompeting CSP1 in time and concentration-dependent manners. CSP1-E1A reduced the expression of pneumococcal virulence factors choline binding protein D (CbpD) and autolysin A (LytA) in vitro, and significantly reduced mouse mortality after lung infection. Furthermore, CSP1-E1A attenuated the acquisition of an antibiotic resistance gene and a capsule gene in vivo. Finally, we demonstrated that the strategy of using a peptide inhibitor is applicable to other CSP subtype, including CSP2. CSP1-E1A and CSP2-E1A were able to cross inhibit the induction of competence and DNA transformation in pneumococcal strains with incompatible ComD subtypes. These results demonstrate the applicability of generating competitive analogues of CSPs as drugs to control horizontal transfer of antibiotic resistance and virulence genes, and to attenuate virulence during infection by S. pneumoniae.
机译:能力刺激肽(CSP)是肺炎链球菌分泌的17个氨基酸的肽信息素。 CSP与其膜相关受体激酶ComD结合后,会引发一系列信号事件,从而导致反应调节剂ComE激活能力调节剂。编码参与DNA吸收和转化以及毒性的蛋白质的基因被上调。先前的研究表明,能力调节子中关键成分的破坏会抑制DNA转化并减弱毒力。因此,竞争性抑制CSP的合成类似物可作为有吸引力的药物来控制肺炎球菌感染并减少感染期间的水平基因转移。我们在CSP1的保守氨基酸残基上进行了氨基酸取代,以尝试禁用DNA转化并减弱肺炎链球菌的毒力。一种突变的肽CSP1-E1A通过以时间和浓度依赖性的方式与CSP1竞争,从而抑制了DNA转化能力的发展。 CSP1-E1A在体外降低了肺炎球菌毒力因子胆碱结合蛋白D(CbpD)和自溶素A(LytA)的表达,并显着降低了肺部感染后的小鼠死亡率。此外,CSP1-E1A减弱了体内抗生素抗性基因和胶囊基因的获取。最后,我们证明了使用肽抑制剂的策略适用于其他CSP亚型,包括CSP2。 CSP1-E1A和CSP2-E1A能够交叉抑制ComD亚型不兼容的肺炎球菌菌株的能力诱导和DNA转化。这些结果证明了产生竞争性CSP的类似物作为控制抗生素抗性和毒力基因的水平转移以及在肺炎链球菌感染期间减弱毒力的药物的适用性。

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