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Prenyltransferases as key enzymes in primary and secondary metabolism

机译:异戊二烯基转移酶是初级和次级代谢中的关键酶

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摘要

Attachment of isoprene units to various acceptors by prenylation plays an important role in primary and secondary metabolism of living organisms. Protein prenylation belongs to posttranslational modification and is involved in cellular regulation process. Prenylated secondary metabolites usually demonstrate promising biological and pharmacological activities. Prenyl transfer reactions catalyzed by prenyltransferases represent the key steps in the biosynthesis and contribute significantly to the structural and biological diversity of these compounds. In the last decade, remarkable progress has been achieved in the biochemical, molecular, and structural biological investigations of prenyltransferases, especially on those of the members of the dimethylallyltryptophan synthase (DMATS) superfamily. Until now, more than 40 of such soluble enzymes are identified and characterized biochemically. They catalyze usually regioselective and stereoselective prenylations of a series of aromatic substances including tryptophan, tryptophan-containing peptides, and other indole derivatives as well as tyrosine or even nitrogen-free substrates. Crystal structures of a number of prenyltransferases have been solved in the past 10 years and provide a solid basis for understanding the mechanism of prenyl transfer reactions.
机译:异戊二烯将异戊二烯单元附着于各种受体在活生物体的初次和二次代谢中起重要作用。蛋白质烯丙基化属于翻译后修饰,并参与细胞调节过程。烯丙基化的次级代谢产物通常表现出有希望的生物学和药理活性。异戊二烯基转移酶催化的异戊二烯基转移反应代表了生物合成中的关键步骤,并显着促进了这些化合物的结构和生物学多样性。在过去的十年中,异戊二烯基转移酶的生物化学,分子和结构生物学研究,尤其是二甲基烯丙基色氨酸合酶(DMATS)超家族成员的生物学研究取得了显着进展。迄今为止,已通过生物化学方法鉴定并鉴定了40多种此类可溶性酶。它们通常催化一系列芳香族物质的区域选择性和立体选择性烯丙基化反应,这些芳香族物质包括色氨酸,含色氨酸的肽和其他吲哚衍生物,以及酪氨酸或什至无氮的底物。在过去的十年中,许多异戊二烯基转移酶的晶体结构已经得到解决,并为理解异戊二烯基转移反应的机理提供了坚实的基础。

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