首页> 外文期刊>Journal of bacteriology >Choline-Binding Protein D (CbpD) in Streptococcus pneumoniae Is Essential for Competence-Induced Cell Lysis
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Choline-Binding Protein D (CbpD) in Streptococcus pneumoniae Is Essential for Competence-Induced Cell Lysis

机译:肺炎链球菌中的胆碱结合蛋白D(CbpD)对于能力诱导的细胞裂解至关重要

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Streptococcus pneumoniae is an important human pathogen that is able to take up naked DNA from the environment by a quorum-sensing-regulated process called natural genetic transformation. This property enables members of this bacterial species to efficiently acquire new properties that may increase their ability to survive and multiply in the human host. We have previously reported that induction of the competent state in a liquid culture of Streptococcus pneumoniae triggers lysis of a subfraction of the bacterial population resulting in release of DNA. We have also proposed that such competence-induced DNA release is an integral part of natural genetic transformation that has evolved to increase the efficiency of gene transfer between pneumococci. In the present work, we have further elucidated the mechanism behind competence-induced cell lysis by identifying a putative murein hydrolase, choline-binding protein D (CbpD), as a key component of this process. By using real-time PCR to estimate the amount of extracellular DNA in competent relative to noncompetent cultures, we were able to show that competence-induced cell lysis and DNA release are strongly attenuated in a cbpD mutant. Ectopic expression of CbpD in the presence or absence of other competence proteins revealed that CbpD is essentially unable to cause cell lysis on its own but depends on at least one additional protein expressed during competence.
机译:肺炎链球菌是一种重要的人类病原体,能够通过法定人数调控的自然遗传转化过程从环境中吸收裸露的DNA。这种特性使该细菌物种的成员能够有效获得新特性,从而增加其在人类宿主中生存和繁殖的能力。我们先前曾报道过,在肺炎链球菌的液体培养物中诱导感受态会触发细菌种群亚组分的裂解,从而导致DNA释放。我们还提出,这种由能力诱导的DNA释放是自然遗传转化不可或缺的一部分,这种进化已逐渐提高了肺炎球菌之间基因转移的效率。在当前的工作中,我们通过鉴定假定的鼠莫林水解酶胆碱结合蛋白D(CbpD)作为该过程的关键组成部分,进一步阐明了能力诱导的细胞裂解的机制。通过使用实时PCR估计感受态细胞相对于非感受态文化的细胞外DNA数量,我们能够证明在 cbpD 突变体中,能力诱导的细胞裂解和DNA释放被大大减弱。在存在或不存在其他能力蛋白的情况下,CbpD的异位表达表明,CbpD本质上无法独自导致细胞裂解,但依赖于在能力期间表达的至少一种其他蛋白。

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