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来自C-1027烯二炔抗肿瘤抗生素生物合成途径的L-酪氨酸2,3-氨基变位酶的结构。

The structure of L-tyrosine 2,3-aminomutase from the C-1027 enediyne antitumor antibiotic biosynthetic pathway.

作者信息

Christianson Carl V, Montavon Timothy J, Van Lanen Steven G, Shen Ben, Bruner Steven D

机构信息

Department of Chemistry, Boston College, Eugene F. Merkert Chemistry Center, Chestnut Hill, Massachusetts 02467, USA.

出版信息

Biochemistry. 2007 Jun 19;46(24):7205-14. doi: 10.1021/bi7003685. Epub 2007 May 22.

Abstract

The SgcC4 l-tyrosine 2,3-aminomutase (SgTAM) catalyzes the formation of (S)-beta-tyrosine in the biosynthetic pathway of the enediyne antitumor antibiotic C-1027. SgTAM is homologous to the histidine ammonia lyase family of enzymes whose activity is dependent on the methylideneimidazole-5-one (MIO) cofactor. Unlike the lyase enzymes, SgTAM catalyzes additional chemical transformations resulting in an overall stereospecific 1,2-amino shift in the substrate l-tyrosine to generate (S)-beta-tyrosine. Previously, we provided kinetic, spectroscopic, and mutagenesis data supporting the presence of MIO in the active site of SgTAM [Christenson, S. D.; Wu, W.; Spies, A.; Shen, B.; and Toney, M. D. (2003) Biochemistry 42, 12708-12718]. Here we report the first X-ray crystal structure of an MIO-containing aminomutase, SgTAM, and confirm the structural homology of SgTAM to ammonia lyases. Comparison of the structure of SgTAM to the l-tyrosine ammonia lyase from Rhodobacter sphaeroides provides insight into the structural basis for aminomutase activity. The results show that SgTAM has a closed active site well suited to retain ammonia and minimize the formation of lyase elimination products. The amino acid determinants for substrate recognition and catalysis can be predicted from the structure, setting the framework for detailed mechanistic investigations.

摘要

SgcC4 L-酪氨酸2,3-氨基变位酶(SgTAM)在烯二炔类抗肿瘤抗生素C-1027的生物合成途径中催化生成(S)-β-酪氨酸。SgTAM与组氨酸氨裂解酶家族的酶同源,其活性依赖于亚甲基咪唑-5-酮(MIO)辅因子。与裂解酶不同,SgTAM催化额外的化学转化,导致底物L-酪氨酸发生整体立体特异性的1,2-氨基迁移,生成(S)-β-酪氨酸。此前,我们提供了动力学、光谱学和诱变数据,支持MIO存在于SgTAM的活性位点[克里斯滕森,S.D.;吴,W.;斯皮斯,A.;沈,B.;和托尼,M.D.(2003年)《生物化学》42,12708 - 12718]。在此,我们报告了含MIO的氨基变位酶SgTAM的首个X射线晶体结构,并证实了SgTAM与氨裂解酶的结构同源性。将SgTAM的结构与球形红杆菌的L-酪氨酸氨裂解酶进行比较,有助于深入了解氨基变位酶活性的结构基础。结果表明,SgTAM具有一个封闭的活性位点,非常适合保留氨并减少裂解酶消除产物的形成。可以从该结构预测底物识别和催化的氨基酸决定因素,为详细的机理研究奠定框架。

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