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一种细胞外、钙激活的核酸酶(EcnA)介导自然感受态古菌的转化。

An Extracellular, Ca-Activated Nuclease (EcnA) Mediates Transformation in a Naturally Competent Archaeon.

机构信息

Department of Plant and Microbial Biology, University of Minnesota, Saint Paul, Minnesota, USA.

Department of Biochemistry, Molecular Biology, and Biophysics, University of Minnesota, Saint Paul, Minnesota, USA.

出版信息

Mol Microbiol. 2024 Oct;122(4):477-490. doi: 10.1111/mmi.15311. Epub 2024 Aug 30.

Abstract

Transformation, the uptake of DNA directly from the environment, is a major driver of gene flow in microbial populations. In bacteria, DNA uptake requires a nuclease that processes dsDNA to ssDNA, which is subsequently transferred into the cell and incorporated into the genome. However, the process of DNA uptake in archaea is still unknown. Previously, we cataloged genes essential to natural transformation in Methanococcus maripaludis, but few homologs of bacterial transformation-associated genes were identified. Here, we characterize one gene, MMJJ_16440 (named here as ecnA), to be an extracellular nuclease. We show that EcnA is Ca-activated, present on the cell surface, and essential for transformation. While EcnA can degrade several forms of DNA, the highest activity was observed with ssDNA as a substrate. Activity was also observed with circular dsDNA, suggesting that EcnA is an endonuclease. This is the first biochemical characterization of a transformation-associated protein in a member of the archaeal domain and suggests that both archaeal and bacterial transformation initiate in an analogous fashion.

摘要

转化,即直接从环境中摄取 DNA,是微生物种群基因流动的主要驱动力。在细菌中,DNA 的摄取需要一种核酸内切酶,它将双链 DNA 加工成单链 DNA,随后将单链 DNA 转入细胞并整合到基因组中。然而,古菌中的 DNA 摄取过程尚不清楚。此前,我们对产甲烷球菌(Methanococcus maripaludis)中的自然转化必需基因进行了编目,但很少鉴定到与细菌转化相关的基因的同源物。在这里,我们将一个基因 MMJJ_16440 (命名为 ecnA)鉴定为一种细胞外核酸内切酶。我们表明 EcnA 是 Ca 激活的,位于细胞表面,并且对转化是必需的。虽然 EcnA 可以降解几种形式的 DNA,但以 ssDNA 作为底物时活性最高。用环状双链 DNA 也观察到活性,表明 EcnA 是一种内切核酸酶。这是古菌域中第一个与转化相关的蛋白的生化特征,表明古菌和细菌的转化都以类似的方式启动。

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