A novel mechanism of sulfur transfer catalyzed byO-acetylhomoserine sulfhydrylase in the methionine-biosynthetic pathway ofWolinella succinogenes

四聚体 化学 裂解酶 蛋氨酸 同四聚体 吡哆醛 半胱氨酸 活动站点 立体化学 二聚体 生物化学 氨基酸 蛋白质亚单位 有机化学 基因
作者
Timothy H. Tran,Kalyanaraman Krishnamoorthy,Tadhg P. Begley,S.E. Ealick
出处
期刊:Acta Crystallographica Section D-biological Crystallography [Wiley]
卷期号:67 (10): 831-838 被引量:25
标识
DOI:10.1107/s0907444911028010
摘要

O-Acetylhomoserine sulfhydrylase (OAHS) is a pyridoxal 5′-­phosphate (PLP) dependent sulfide-utilizing enzyme in the l-cysteine and l-methionine biosynthetic pathways of various enteric bacteria and fungi. OAHS catalyzes the conversion of O-acetylhomoserine to homocysteine using sulfide in a process known as direct sulfhydrylation. However, the source of the sulfur has not been identified and no structures of OAHS have been reported in the literature. Here, the crystal structure of Wolinella succinogenes OAHS (MetY) determined at 2.2 Å resolution is reported. MetY crystallized in space group C2 with two monomers in the asymmetric unit. Size-exclusion chromatography, dynamic light scattering and crystal packing indicate that the biological unit is a tetramer in solution. This is further supported by the crystal structure, in which a tetramer is formed using a combination of non­­crystallographic and crystallographic twofold axes. A search for structurally homologous proteins revealed that MetY has the same fold as cystathionine γ-lyase and methionine γ-lyase. The active sites of these enzymes, which are also PLP-dependent, share a high degree of structural similarity, suggesting that MetY belongs to the γ-elimination subclass of the Cys/Met metabolism PLP-dependent family of enzymes. The structure of MetY, together with biochemical data, provides insight into the mechanism of sulfur transfer to a small molecule via a protein thiocarboxylate intermediate.
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