Metalloproteins Unit, Institut de Biologie Structurale, UMR5075, CEA, CNRS, Université Grenoble-Alpes, 71, avenue des Martyrs, CS 10090, 38044 Grenoble cedex 9 (France).
Angew Chem Int Ed Engl. 2014 Oct 27;53(44):11840-4. doi: 10.1002/anie.201407320. Epub 2014 Sep 5.
Streptomyces actuosus tryptophan lyase (NosL) is a radical SAM enzyme which catalyzes the synthesis of 3-methyl-2-indolic acid, a precursor in the synthesis of the promising antibiotic nosiheptide. The reaction involves cleavage of the tryptophan Cα-Cβ bond and recombination of the amino-acid-derived -COOH fragment at the indole ring. Reported herein is the 1.8 Å resolution crystal structure of NosL complexed with its substrate. Unexpectedly, only one of the tryptophan amino hydrogen atoms is optimally placed for H abstraction by the SAM-derived 5'-deoxyadenosyl radical. This orientation, in turn, rules out the previously proposed delocalized indole radical as the species which undergoes Cα-Cβ bond cleavage. Instead, stereochemical considerations indicate that the reactive intermediate is a (·)NH tryptophanyl radical. A structure-based amino acid sequence comparison of NosL with the tyrosine lyases ThiH and HydG strongly suggests that an equivalent (·)NH radical operates in the latter enzymes.
链霉菌色氨酸裂解酶(NosL)是一种依赖于 SAM 的酶,它可以催化 3-甲基-2-吲哚乙酸的合成,该物质是新型抗生素诺斯替丁的前体。该反应涉及到色氨酸 Cα-Cβ 键的断裂和氨基酸衍生的-COOH 片段在吲哚环上的重新组合。本文报道了 NosL 与其底物复合物的 1.8 Å 分辨率晶体结构。出乎意料的是,只有一个色氨酸氨基氢原子被 SAM 衍生的 5'-脱氧腺苷自由基最佳地放置用于 H 提取。这种取向,反过来,排除了以前提出的离域吲哚自由基作为经历 Cα-Cβ 键断裂的物种。相反,立体化学考虑表明,反应中间体是(·)NH 色氨酰基自由基。基于结构的 NosL 与酪氨酸裂解酶 ThiH 和 HydG 的氨基酸序列比较强烈表明,在后两种酶中存在等效的(·)NH 自由基。