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揭示酶家族的隐藏功能多样性。

Revealing the hidden functional diversity of an enzyme family.

机构信息

1] Direction des Sciences du Vivant, Commissariat à l'energie atomique et aux énergies alternatives (CEA), Institut de Génomique, Evry, France. [2] CNRS-UMR8030, Evry, France. [3] Université d'Evry Val d'Essonne, Evry, France. [4].

1] Direction des Sciences du Vivant, Commissariat à l'energie atomique et aux énergies alternatives (CEA), Institut de Génomique, Evry, France. [2] CNRS-UMR8030, Evry, France. [3] Université d'Evry Val d'Essonne, Evry, France. [4] [5].

出版信息

Nat Chem Biol. 2014 Jan;10(1):42-9. doi: 10.1038/nchembio.1387. Epub 2013 Nov 17.

Abstract

Millions of protein database entries are not assigned reliable functions, preventing the full understanding of chemical diversity in living organisms. Here, we describe an integrated strategy for the discovery of various enzymatic activities catalyzed within protein families of unknown or little known function. This approach relies on the definition of a generic reaction conserved within the family, high-throughput enzymatic screening on representatives, structural and modeling investigations and analysis of genomic and metabolic context. As a proof of principle, we investigated the DUF849 Pfam family and unearthed 14 potential new enzymatic activities, leading to the designation of these proteins as β-keto acid cleavage enzymes. We propose an in vivo role for four enzymatic activities and suggest key residues for guiding further functional annotation. Our results show that the functional diversity within a family may be largely underestimated. The extension of this strategy to other families will improve our knowledge of the enzymatic landscape.

摘要

数以百万计的蛋白质数据库条目尚未被赋予可靠的功能,这阻碍了人们对生物体中化学多样性的全面理解。在这里,我们描述了一种综合策略,用于发现未知或功能知之甚少的蛋白质家族中各种酶促活性。该方法依赖于在家族内定义保守的通用反应、对代表进行高通量酶筛选、结构和建模研究以及基因组和代谢背景分析。作为原理验证,我们研究了 DUF849 Pfam 家族,并发现了 14 种潜在的新酶促活性,从而将这些蛋白质指定为β-酮酸裂解酶。我们提出了四种酶促活性的体内作用,并建议了关键残基以指导进一步的功能注释。我们的结果表明,家族内的功能多样性可能被大大低估了。将该策略扩展到其他家族将提高我们对酶学景观的认识。

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