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聚焦宏基因组学:土壤中卡尔森氏枯草杆菌蛋白酶的分子微观多样性。

Zooming in on metagenomics: molecular microdiversity of Subtilisin Carlsberg in soil.

机构信息

B.R.A.I.N.AG (Biotechnology Research and Information Network), Darmstädter Strasse 34-36, D-64673 Zwingenberg, Germany.

出版信息

J Mol Biol. 2012 Apr 20;418(1-2):16-20. doi: 10.1016/j.jmb.2012.02.015. Epub 2012 Feb 14.

Abstract

Evolution has led to the development of a gigantic repertoire of microbial genes that can be exploited for industrial purposes. Due to microevolutionary processes, this gene pool is constantly varied and adapted to the prevalent environmental and physiological conditions. It though remains unclear to what extent gene variants coexist in natural habitats and to what extent they vanish due to competition. Here, we tapped the pool of gene variants of the serine protease Subtilisin Carlsberg present in soil habitats, demonstrating a high degree of (micro) diversity on a genetic level, as well as on a functional level. A set of 51 mature enzyme variants each carrying two to eight amino acid changes were recovered. While some mutations were only present in single variants, other changes appear to be rather conserved even across different habitats. The observed spectrum of biochemical properties makes persistent gene variants a potent source for biotechnologically relevant enzymes, expanding the toolbox of metagenomic approaches.

摘要

进化导致了微生物基因的巨大基因库的发展,这些基因可以被用于工业目的。由于微进化过程,这个基因库不断变化和适应流行的环境和生理条件。然而,目前还不清楚基因变异在自然栖息地中共存的程度,以及由于竞争而消失的程度。在这里,我们利用了土壤栖息地中存在的枯草杆菌蛋白酶卡尔森变体的基因变体库,在遗传水平和功能水平上都显示出了高度的(微观)多样性。我们回收了 51 种成熟酶变体,每种变体都携带两个到八个氨基酸的变化。虽然一些突变只存在于单个变体中,但其他变化即使在不同的栖息地也似乎相当保守。观察到的生化特性谱使持久的基因变体成为生物技术相关酶的潜在来源,扩展了宏基因组方法的工具包。

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