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FimT 介导的细菌自然转化过程中 DNA 摄取的分子基础。

The molecular basis of FimT-mediated DNA uptake during bacterial natural transformation.

机构信息

Institute of Molecular Biology and Biophysics, ETH Zürich, Otto-Stern-Weg 5, Zürich, Switzerland.

Department of Microbiology, Monash University, 19 Innovation Walk, Clayton, 3800, Victoria, Australia.

出版信息

Nat Commun. 2022 Mar 4;13(1):1065. doi: 10.1038/s41467-022-28690-1.

Abstract

Naturally competent bacteria encode sophisticated protein machinery for the uptake and translocation of exogenous DNA into the cell. If this DNA is integrated into the bacterial genome, the bacterium is said to be naturally transformed. Most competent bacterial species utilise type IV pili for the initial DNA uptake step. These proteinaceous cell-surface structures are composed of thousands of pilus subunits (pilins), designated as major or minor according to their relative abundance in the pilus. Here, we show that the minor pilin FimT plays an important role in the natural transformation of Legionella pneumophila. We use NMR spectroscopy, in vitro DNA binding assays and in vivo transformation assays to understand the molecular basis of FimT's role in this process. FimT binds to DNA via an electropositive patch, rich in arginines, several of which are well-conserved and located in a conformationally flexible C-terminal tail. FimT orthologues from other Gammaproteobacteria share the ability to bind to DNA. Our results suggest that FimT plays an important role in DNA uptake in a wide range of competent species.

摘要

天然感受态细菌编码复杂的蛋白质机制,用于将外源 DNA 摄取并转移到细胞内。如果该 DNA 整合到细菌基因组中,则该细菌被称为天然转化。大多数有天然感受态的细菌物种利用 IV 型菌毛进行初始 DNA 摄取步骤。这些蛋白细胞表面结构由数千个菌毛亚基(菌毛)组成,根据其在菌毛中的相对丰度,分别指定为主要或次要菌毛。在这里,我们表明,次要菌毛 FimT 在嗜肺军团菌的自然转化中起着重要作用。我们使用 NMR 光谱、体外 DNA 结合测定和体内转化测定来了解 FimT 在该过程中的作用的分子基础。FimT 通过富含精氨酸的正电荷斑与 DNA 结合,其中几个精氨酸是保守的,位于构象灵活的 C 末端尾部。来自其他γ变形菌的 FimT 同源物具有与 DNA 结合的能力。我们的结果表明,FimT 在广泛的有天然感受态的物种的 DNA 摄取中起着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b73e/8897410/7c65035e3edb/41467_2022_28690_Fig1_HTML.jpg

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