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硫胺素焦磷酸(维生素B1)噻唑部分的生物合成。

Biosynthesis of the thiazole moiety of thiamin pyrophosphate (vitamin B1).

作者信息

Park Joo-Heon, Dorrestein Pieter C, Zhai Huili, Kinsland Cynthia, McLafferty Fred W, Begley Tadhg P

机构信息

Department of Chemistry and Chemical Biology, Cornell University, Ithaca, New York 14853, USA.

出版信息

Biochemistry. 2003 Oct 28;42(42):12430-8. doi: 10.1021/bi034902z.

Abstract

While most of the proteins required for the biosynthesis of thiamin pyrophosphate have been known for more than a decade, the reconstitution of this biosynthesis in a defined biochemical system has been difficult due to the novelty of the chemistry involved. Here we demonstrate the first successful enzymatic synthesis of the thiazole moiety of thiamin from glycine, cysteine, and deoxy-D-xylulose-5-phosphate using overexpressed Bacillus subtilis ThiF, ThiS, ThiO, ThiG, and a NifS-like protein. This has facilitated the identification of the biochemical function of each of the proteins involved: ThiF catalyzes the adenylation of ThiS; NifS catalyzes the transfer of sulfur from cysteine to the acyl adenylate of ThiS; ThiO catalyzes the oxidation of glycine to the corresponding imine; and ThiG catalyzes the formation of the thiazole phosphate ring. The complex oxidative cyclization reaction involved in the biosynthesis of the thiamin thiazole has been greatly simplified by replacing ThiF, ThiS, ThiO, and NifS with defined biosynthetic intermediates in a reaction where ThiG is the only required enzyme.

摘要

虽然硫胺素焦磷酸生物合成所需的大多数蛋白质在十多年前就已为人所知,但由于所涉及化学过程的新颖性,在确定的生化系统中重建这种生物合成一直很困难。在这里,我们展示了首次使用过表达的枯草芽孢杆菌ThiF、ThiS、ThiO、ThiG和一种类NifS蛋白,从甘氨酸、半胱氨酸和脱氧-D-木酮糖-5-磷酸成功酶促合成硫胺素的噻唑部分。这有助于确定所涉及的每种蛋白质的生化功能:ThiF催化ThiS的腺苷化;NifS催化硫从半胱氨酸转移到ThiS的酰基腺苷酸;ThiO催化甘氨酸氧化为相应的亚胺;ThiG催化噻唑磷酸环的形成。通过在仅需ThiG作为酶的反应中用确定的生物合成中间体替代ThiF、ThiS、ThiO和NifS,硫胺素噻唑生物合成中涉及的复杂氧化环化反应已大大简化。

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