Suppr超能文献

TsrM的铁硫和钴胺素辅因子的光谱和电化学表征,TsrM是一种不寻常的自由基S-腺苷甲硫氨酸甲基转移酶。

Spectroscopic and Electrochemical Characterization of the Iron-Sulfur and Cobalamin Cofactors of TsrM, an Unusual Radical S-Adenosylmethionine Methylase.

作者信息

Blaszczyk Anthony J, Silakov Alexey, Zhang Bo, Maiocco Stephanie J, Lanz Nicholas D, Kelly Wendy L, Elliott Sean J, Krebs Carsten, Booker Squire J

机构信息

Department of Chemistry, Boston University , 590 Commonwealth Avenue, Boston, Massachusetts 02215, United States.

School of Chemistry and Biochemistry and the Parker H. Petit Institute for Bioengineering and Bioscience, Georgia Institute of Technology , Atlanta, Georgia 30332, United States.

出版信息

J Am Chem Soc. 2016 Mar 16;138(10):3416-26. doi: 10.1021/jacs.5b12592. Epub 2016 Mar 3.

Abstract

TsrM, an annotated radical S-adenosylmethionine (SAM) enzyme, catalyzes the methylation of carbon 2 of the indole ring of L-tryptophan. Its reaction is the first step in the biosynthesis of the unique quinaldic acid moiety of thiostrepton A, a thiopeptide antibiotic. The appended methyl group derives from SAM; however, the enzyme also requires cobalamin and iron-sulfur cluster cofactors for turnover. In this work we report the overproduction and purification of TsrM and the characterization of its metallocofactors by UV-visible, electron paramagnetic resonance, hyperfine sublevel correlation (HYSCORE), and Mössbauer spectroscopies as well as protein-film electrochemistry (PFE). The enzyme contains 1 equiv of its cobalamin cofactor in its as-isolated state and can be reconstituted with iron and sulfide to contain one [4Fe-4S] cluster with a site-differentiated Fe(2+)/Fe(3+) pair. Our spectroscopic studies suggest that TsrM binds cobalamin in an uncharacteristic five-coordinate base-off/His-off conformation, whereby the dimethylbenzimidazole group is replaced by a non-nitrogenous ligand, which is likely a water molecule. Electrochemical analysis of the protein by PFE indicates a one-electron redox feature with a midpoint potential of -550 mV, which is assigned to a 4Fe-4S/4Fe-4S redox couple. Analysis of TsrM by Mössbauer and HYSCORE spectroscopies suggests that SAM does not bind to the unique iron site of the cluster in the same manner as in other radical SAM (RS) enzymes, yet its binding still perturbs the electronic configuration of both the Fe/S cluster and the cob(II)alamin cofactors. These biophysical studies suggest that TsrM is an atypical RS enzyme, consistent with its reported inability to catalyze formation of a 5'-deoxyadenosyl 5'-radical.

摘要

TsrM是一种已注释的自由基S-腺苷甲硫氨酸(SAM)酶,催化L-色氨酸吲哚环2位的甲基化。其反应是硫链丝菌素A(一种硫肽抗生素)独特喹哪啶酸部分生物合成的第一步。添加的甲基来自SAM;然而,该酶的周转还需要钴胺素和铁硫簇辅因子。在这项工作中,我们报告了TsrM的过量生产和纯化,以及通过紫外可见光谱、电子顺磁共振、超精细能级相关(HYSCORE)和穆斯堡尔光谱以及蛋白质膜电化学(PFE)对其金属辅因子的表征。该酶在其分离状态下含有1当量的钴胺素辅因子,并且可以用铁和硫化物重构以包含一个具有位点分化的Fe(2+)/Fe(3+)对的[4Fe-4S]簇。我们的光谱研究表明,TsrM以一种非典型的五配位碱基脱离/组氨酸脱离构象结合钴胺素,其中二甲基苯并咪唑基团被一个非含氮配体取代,该配体可能是一个水分子。通过PFE对该蛋白质进行的电化学分析表明存在一个单电子氧化还原特征,中点电位为-550 mV,该电位归因于4Fe-4S/4Fe-4S氧化还原对。通过穆斯堡尔光谱和HYSCORE光谱对TsrM的分析表明,SAM与簇的独特铁位点的结合方式与其他自由基SAM(RS)酶不同,但其结合仍然会扰乱Fe/S簇和钴胺素(II)辅因子的电子构型。这些生物物理研究表明,TsrM是一种非典型的RS酶,与其报道的无法催化形成5'-脱氧腺苷5'-自由基一致。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验