首页> 外文期刊>Biochemistry >l-Cysteine Desulfidase: An (4Fe-4S) Enzyme Isolated from Methanocaldococcus jannaschii That Catalyzes the Breakdown of l-Cysteine into Pyruvate, Ammonia, and Sulfide.
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l-Cysteine Desulfidase: An (4Fe-4S) Enzyme Isolated from Methanocaldococcus jannaschii That Catalyzes the Breakdown of l-Cysteine into Pyruvate, Ammonia, and Sulfide.

机译:l半胱氨酸脱硫酶:一种从詹纳氏甲烷球菌分离的(4Fe-4S)酶,可催化l半胱氨酸分解为丙酮酸,氨和硫化物。

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摘要

A [4Fe-4S] enzyme that decomposes l-cysteine to hydrogen sulfide, ammonia, and pyruvate has been isolated and characterized from Methanocaldococcus jannaschii. The sequence of the isolated enzyme demonstrated that the protein was the product of the M. jannaschii MJ1025 gene. The protein product of this gene was recombinantly produced in Escherichia coli and purified to homogeneity. Both the isolated and recombinant enzymes are devoid of pyridoxal phosphate (PLP) and are rapidly inactivated upon exposure to air. The air-inactivated enzyme is activated by reaction with Fe(2+) and dithiothreitol in the absence of air. The air-inactivated enzyme contains 3 mol of iron per subunit (43 kDa, SDS gel electrophoresis), and the native enzyme has a measured molecular mass of 135 kDa (gel filtration), indicating it is a trimer. The enzyme is very specific for l-cysteine, with no activity being detected with d-cysteine, l-homocysteine, 3-mercaptopropionic acid (cysteine without the amino group), cysteamine (cysteine without the carboxylic acid), or mercaptolactate (the hydroxyl analogue of cysteine). The activity of the enzyme was stimulated by 40% when the enzyme was assayed in the presence of methyl viologen (4 mM) and inhibited by 70% when the enzyme was assayed in the presence of EDTA (7.1 mM). Preincubation of the enzyme with iodoacetamide (17 mM) completely abolishes activity. The enzymatic activity has a half-life of 8 or 12 min when the enzyme is treated at room temperature with 0.42 mM N-ethylmaleimide (NEM) or 0.42 mM iodoacetamide, respectively. MALDI analysis of the NEM-inactivated enzyme showed Cys25 as the site of alkylation. Site-directed mutagenesis of each of four of the cysteines conserved in the orthologues of the enzyme reduced the catalytic efficiency and thermal stability of the enzyme. The enzyme was found to catalyze exchange of the C-2 hydrogen of the l-cysteine with solvent. These results are consistent with three of the conserved cysteines being involved in the formation of the [4Fe-4S] center and the thiolate of Cys25 serving as a base to abstract the alpha-hydrogen in the first step of the elimination. Although the enzyme has no sequence homology to any known enzymes, including the non-PLP-dependent serine/threonine dehydratases or aconitases, the mechanisms of action of all of these enzymes are similar, in that each catalyzes an alpha,beta-elimination reaction adjacent to a carboxylate group. It is proposed that the enzyme may be responsible for the production of sulfide required for the biosynthesis of iron-sulfur centers in this archaea. A mechanism of action of the enzyme is proposed.
机译:从詹氏甲烷球菌中分离并鉴定了一种可将L-半胱氨酸分解为硫化氢,氨和丙酮酸的[4Fe-4S]酶。分离的酶的序列证明该蛋白质是詹氏甲烷球菌MJ1025基因的产物。该基因的蛋白质产物在大肠杆菌中重组产生并纯化至同质。分离的和重组的酶均不含磷酸吡al醛(PLP),并且在暴露于空气后迅速失活。空气灭活的酶通过与Fe(2+)和二硫苏糖醇在不存在空气的情况下反应而被激活。空气灭活的酶每个亚基含铁3摩尔(43 kDa,SDS凝胶电泳),天然酶的分子量为135 kDa(凝胶过滤),表明它是三聚体。该酶对l-半胱氨酸具有很高的特异性,d-半胱氨酸,l-高半胱氨酸,3-巯基丙酸(不含氨基的半胱氨酸),半胱胺(不含羧酸的半胱氨酸)或巯基乳酸(羟基半胱氨酸类似物)。当在甲基紫精(4 mM)存在下测定酶时,酶的活性被40%刺激,而在EDTA(7.1 mM)存在下测定酶时,酶的活性被70%抑制。用碘乙酰胺(17 mM)预温育酶完全消除了活性。当该酶在室温分别用0.42 mM N-乙基马来酰亚胺(NEM)或0.42 mM碘乙酰胺处理时,酶活性的半衰期为8或12分钟。 NEM灭活酶的MALDI分析显示Cys25为烷基化位点。酶的直向同源物中保守的四个半胱氨酸的每一个的定点诱变降低了酶的催化效率和热稳定性。发现该酶催化1-半胱氨酸的C-2氢与溶剂的交换。这些结果与在[4Fe-4S]中心的形成中涉及的三个保守半胱氨酸和Cys25的硫醇盐作为消除第一步中提取α-氢的碱一致。尽管该酶与任何已知酶均不具有序列同源性,包括非PLP依赖的丝氨酸/苏氨酸脱水酶或乌头酸酶,但所有这些酶的作用机理均相似,因为每种酶均催化相邻的α,β消除反应羧基。建议该酶可能负责该古细菌中铁-硫中心生物合成所需的硫化物的产生。提出了酶的作用机理。

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