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(能力)操纵子受肺炎链球菌 D39 中的 CcpA 调控。

(Competence) Operon Is Regulated by CcpA in Streptococcus pneumoniae D39.

机构信息

Key Laboratory of Diagnostic Medicine Designated by the Ministry of Education, Department of Laboratory Medicine, Chongqing Medical University, Chongqing, China.

Zybio Inc., Chongqing, China.

出版信息

Microbiol Spectr. 2023 Jun 15;11(3):e0001223. doi: 10.1128/spectrum.00012-23. Epub 2023 Apr 10.

Abstract

Natural transformation plays an important role in the formation of drug-resistant bacteria. Exploring the regulatory mechanism of natural transformation can aid the discovery of new antibacterial targets and reduce the emergence of drug-resistant bacteria. Competence is a prerequisite of natural transformation in Streptococcus pneumoniae, in which operon is the core regulator of competence. To date, only ComE has been shown to directly regulate transcription. In this study, a transcriptional regulator, the catabolite control protein A (CcpA), was identified that directly regulated transcription. We confirmed that CcpA binds to the -acting catabolite response elements (cre) in the promoter region to regulate transcription and transformation. Moreover, CcpA can coregulate transcription with phosphorylated and dephosphorylated ComE. Regulation of transcription and transformation by CcpA was also affected by carbon source signals. Together, these insights demonstrate the versatility of CcpA and provide a theoretical basis for reducing the emergence of drug-resistant bacteria. Streptococcus pneumoniae is a major cause of bacterial infections in humans, such as pneumonia, bacteremia, meningitis, otitis media, and sinusitis. Like most streptococci, S. pneumoniae is naturally competent and employs this ability to augment its adaptive evolution. The current study illustrates CcpA, a carbon catabolite regulator, can participate in the competence process by regulating transcription, and this process is regulated by different carbon source signals. These hidden abilities are likely critical for adaptation and colonization in the environment.

摘要

自然转化在耐药菌的形成中起着重要作用。探索自然转化的调控机制有助于发现新的抗菌靶标,减少耐药菌的出现。感受态是肺炎链球菌自然转化的前提,其中 操纵子是感受态的核心调控因子。迄今为止,只有 ComE 被证明可以直接调控 转录。在这项研究中,鉴定了一种转录调节因子,即分解代谢物控制蛋白 A(CcpA),它可以直接调控 转录。我们证实 CcpA 结合到 启动子区域的 - 作用分解代谢物响应元件(cre)上,以调节 转录和转化。此外,CcpA 可以与磷酸化和去磷酸化的 ComE 共同调节 转录。CcpA 对 转录和转化的调节也受到碳源信号的影响。总之,这些发现表明了 CcpA 的多功能性,并为减少耐药菌的出现提供了理论依据。肺炎链球菌是人类细菌感染的主要原因,如肺炎、菌血症、脑膜炎、中耳炎和鼻窦炎。与大多数链球菌一样,肺炎链球菌具有天然感受态,并利用这种能力增强其适应性进化。本研究表明,碳分解代谢物调节因子 CcpA 可以通过调节 转录参与感受态过程,而这一过程受不同碳源信号的调节。这些隐藏的能力可能对环境中的适应和定植至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/86ee/10269683/eb6cf0ce7b47/spectrum.00012-23-f001.jpg

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