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有机分子酶辅因子的功能多样性。

Functional diversity of organic molecule enzyme cofactors.

机构信息

Empa, Swiss Federal Laboratories for Materials Science and Technology, Laboratory for Biomaterials, Lerchenfeldstr. 5, CH-9014 St., Gallen, Switzerland.

出版信息

Nat Prod Rep. 2013 Oct 11;30(10):1324-45. doi: 10.1039/c3np70045c. Epub 2013 Aug 12.

Abstract

Covering up to 2013. Cofactor-dependent enzymes which need small organic molecule cofactors to accomplish enzymatic activity are widespread. The number of newly discovered reactions within cofactor-dependent enzyme families increases continuously. A knowledge based categorization of cofactors with respect to their chemical properties shows that within enzymes they are not used for the catalysis of singular types of reactions and functionalities. Therefore, in many cases an unambiguous and narrow classification does not seem sufficient. Rather, the functional diversity of cofactors found in enzymes represents variations around specific themes with regard to a catalysed reaction and the cofactor chemistry. Furthermore, organic cofactor molecules are also used for non-enzymatic functions. Two representative cofactors are exemplarily discussed in detail, thiamin diphosphate (ThDP) as a self-sufficient cofactor and S-adenosyl-L-methionine (SAM), as both a catalytic and building-block-delivering cofactor. A further synopsis on selected examples of organic cofactors emphasizes the discovery and application of new enzymatic activities based on the cofactor-dependent chemistry and shows how bioinspired synthesis approaches expand catalytic and non-catalytic synthesis applications beyond natural solutions.

摘要

涵盖至 2013 年。需要小分子有机辅因子才能完成酶活性的依赖辅因子的酶广泛存在。依赖辅因子酶家族中新发现的反应数量不断增加。基于化学性质对辅因子进行的知识分类表明,在酶中,它们不是用于催化单一类型的反应和功能。因此,在许多情况下,明确和狭义的分类似乎并不足够。相反,在催化反应和辅因子化学方面,酶中发现的辅因子的功能多样性代表了围绕特定主题的变化。此外,有机辅因子分子也用于非酶功能。本文详细讨论了两个有代表性的辅因子,即硫胺素二磷酸(ThDP)作为自足辅因子和 S-腺苷-L-蛋氨酸(SAM),既是催化辅因子又是构建块传递辅因子。对选定有机辅因子实例的进一步概述强调了基于依赖辅因子化学的新酶活性的发现和应用,并展示了仿生合成方法如何将催化和非催化合成应用扩展到超越自然解决方案的范围。

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