胶囊对肺炎链球菌自然转化的抑制作用。

IF 4.7 1区 生物学 Q1 MICROBIOLOGY
mBio Pub Date : 2025-10-08 Epub Date: 2025-08-28 DOI:10.1128/mbio.01394-25
Sheya Xiao Ma, Hannes Eichner, Michael Cammer, Jeffrey N Weiser
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引用次数: 0

摘要

基于不同多糖的表达,肺炎链球菌(Spn)的荚膜具有高度异质性。Spn转化是由Com调控子控制的,主要是用未封装的实验室菌株进行研究。然而,基因组研究显示不同血清型临床分离株的重组率不同。由于这些分离株在遗传上不同于荚膜编码基因,因此转化与荚膜之间的确切关系尚不清楚。在这里,我们比较了一组等基因胶囊开关菌株的可转化性。不同被囊类型和被囊量菌株的转化频率差异显著,未被囊的菌株的转化频率高于被囊的菌株。监测Com调控基因表达的每个菌株的gfp报告显示相似的动力学,表明可转化性的差异是由于能力激活的下游过程。Com菌毛由能力诱导,结合并吸收供体DNA,是转化装置的核心组成部分。Com菌的表面暴露在不同血清型之间存在显著差异,高转化菌株具有更多结合ComGC抗体的细胞。此外,电子显微镜显示,可转化性与携带Com菌毛的细胞比例相关,这受到胶囊和血清型的影响。此外,未包被菌株的毛比包被菌株的毛长。荚膜孔隙度检测显示,转化频率较高的血清型荚膜孔隙度较高。总之,这些结果表明,胶囊干扰了Com菌毛的组装,从而抑制了Spn的自然转化。该胶囊是肺炎链球菌(Spn)的主要毒力因子,提供物理屏蔽,并在至少100种血清型中表现出广泛的多样性。虽然Spn的自然转化主要在未包封的实验室菌株中表现出来,但临床包封的分离株也表现出可转化性,并在宿主运输过程中表现出不同的重组率。我们利用其他基因相同的胶囊开关菌株来分离胶囊对转化的影响。我们证明了血清型和数量依赖于转化的胶囊抑制,介导与转化毛组装和功能的阻碍。这项研究挑战了未封装的实验室菌株完全概括自然转化动力学的范式。通过将胶囊重新定义为Spn生物学的多功能调节剂,平衡毒力和适应性,我们的发现促进了我们对肺炎球菌进化的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inhibitory effect of capsule on natural transformation of Streptococcus pneumoniae.

The capsule of Streptococcus pneumoniae (Spn) is highly heterogeneous based on the expression of distinct polysaccharides. Spn transformation, controlled by the Com regulon, has been predominantly studied using unencapsulated laboratory strains. However, genomic studies revealed different rates of recombination events in clinical isolates of different serotypes. As these isolates were genetically distinct beyond capsule-encoding genes, the exact relationship between transformation and capsule remains unclear. Herein, we compared the transformability of a collection of isogenic capsule-switch strains. Strains with different capsule types and amounts significantly differed in their transformation frequency, with the unencapsulated strain having a higher frequency compared to encapsulated strains. A GFP-reporter of each strain monitoring the expression of a Com regulon-controlled gene showed similar kinetics, indicating differences in transformability were due to processes downstream of competence activation. The Com pilus, induced by competence, binds and takes in the donor DNA and is the central component of the transformation apparatus. The surface exposure of Com pilus significantly differed among serotypes with highly transformable strains having more cells binding ComGC antibody. Furthermore, electron microscopy demonstrated that transformability correlated with the proportion of cells bearing a Com pilus, which was affected by both the presence of capsule and serotype. Additionally, the unencapsulated strain displayed longer pili than encapsulated strains. Examination of capsule porosity revealed that serotypes with higher transformation frequencies had more porous capsules. Together, these results indicate that the capsule interferes with the assembly of Com pilus, thereby inhibiting the natural transformation of Spn.IMPORTANCEThe capsule is a major virulence factor of Streptococcus pneumoniae (Spn), providing a physical shield and exhibiting extensive diversity across at least 100 serotypes. Although natural transformation of Spn has predominantly been characterized in unencapsulated laboratory strains, clinical encapsulated isolates also exhibit transformability and demonstrate varied recombination rates during host carriage. We utilized otherwise genetically identical capsule-switch strains to isolate the effect of capsule on transformation. We demonstrate serotype- and quantity-dependent inhibition of transformation by the capsule, mediated through hindrance with the transformation pilus assembly and function. This study challenges the paradigm that unencapsulated laboratory strains fully recapitulate natural transformation dynamics. By redefining the capsule as a multifunctional modulator of Spn biology, balancing virulence and adaptability, our findings advance our understanding of pneumococcal evolution.

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来源期刊
mBio
mBio MICROBIOLOGY-
CiteScore
10.50
自引率
3.10%
发文量
762
审稿时长
1 months
期刊介绍: mBio® is ASM''s first broad-scope, online-only, open access journal. mBio offers streamlined review and publication of the best research in microbiology and allied fields.
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