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发现并结构表征一种新型的海洋来源糖苷酶家族。

Discovery and structural characterization of a novel glycosidase family of marine origin.

机构信息

UPMC University Paris 6 CNRS, UMR 7139 Marine Plants and Biomolecules, Station Biologique de Roscoff, Roscoff, Bretagne, France.

出版信息

Environ Microbiol. 2011 May;13(5):1253-70. doi: 10.1111/j.1462-2920.2011.02426.x. Epub 2011 Feb 18.

DOI:10.1111/j.1462-2920.2011.02426.x
PMID:21332624
Abstract

The genomic data on heterotrophic marine bacteria suggest the crucial role that microbes play in the global carbon cycle. However, the massive presence of hypothetical proteins hampers our understanding of the mechanisms by which this carbon cycle is carried out. Moreover, genomic data from marine microorganisms are essentially annotated in the light of the biochemical knowledge accumulated on bacteria and fungi which decompose terrestrial plants. However marine algal polysaccharides clearly differ from their terrestrial counterparts, and their associated enzymes usually constitute novel protein families. In this study, we have applied a combination of bioinformatics, targeted activity screening and structural biology to characterize a hypothetical protein from the marine bacterium Zobellia galactanivorans, which is distantly related to GH43 family. This protein is in fact a 1,3-α-3,6-anhydro-l-galactosidase (AhgA) which catalyses the last step in the degradation pathway of agars, a family of polysaccharides unique to red macroalgae. AhgA adopts a β-propeller fold and displays a zinc-dependent catalytic machinery. This enzyme is the first representative of a new family of glycoside hydrolases, especially abundant in coastal waters. Such genes of marine origin have been transferred to symbiotic microbes associated with marine fishes, but also with some specific human populations.

摘要

海洋异养细菌的基因组数据表明,微生物在全球碳循环中起着至关重要的作用。然而,大量的假设蛋白阻碍了我们理解微生物执行碳循环的机制。此外,海洋微生物的基因组数据主要是根据在细菌和真菌方面积累的生化知识来注释的,这些细菌和真菌分解陆地植物。然而,海洋藻类多糖显然与陆地植物多糖不同,其相关酶通常构成新的蛋白质家族。在这项研究中,我们应用了生物信息学、靶向活性筛选和结构生物学相结合的方法,对来自海洋细菌 Zobellia galactanivorans 的一种假定蛋白进行了表征,该蛋白与 GH43 家族有较远的亲缘关系。事实上,这种蛋白是一种 1,3-α-3,6-脱水-l-半乳糖苷酶(AhgA),它催化琼脂降解途径的最后一步,琼脂是红海藻特有的多糖家族。AhgA 采用β-螺旋桨折叠结构,并显示锌依赖性催化机制。这种酶是糖苷水解酶新家族的第一个代表,在沿海水域中特别丰富。这些源自海洋的基因已被转移到与海洋鱼类相关的共生微生物中,但也与一些特定的人群有关。

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