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将O-乙酰丝氨酸巯基酶中的内部醛亚胺赖氨酸(K42)替换为丙氨酸,这表明了其在转亚胺化反应中以及作为一般碱催化剂时的重要性。

A change in the internal aldimine lysine (K42) in O-acetylserine sulfhydrylase to alanine indicates its importance in transimination and as a general base catalyst.

作者信息

Rege V D, Kredich N M, Tai C H, Karsten W E, Schnackerz K D, Cook P F

机构信息

Department of Biochemistry and Molecular Biology, University of North Texas Health Science Center at Fort Worth 76107-2699, USA.

出版信息

Biochemistry. 1996 Oct 15;35(41):13485-93. doi: 10.1021/bi961517j.

Abstract

O-Acetylserine sulfhydrylase (OASS) is a pyridoxal 5'-phosphate dependent enzyme that catalyzes a beta-replacement reaction forming L-cysteine and acetate from O-acetyl-L-serine (OAS) and sulfide. The pyridoxal 5'-phosphate (PLP) is bound at the active site in Schiff base linkage with a lysine. In the present study, the Schiff base lysine was identified as lysine 42, and its role in the OASS reaction was determined by changing it to alanine using site-directed mutagenesis. K42A-OASS is isolated as an external aldimine with methionine or leucine and shows no reaction with the natural substrates. Apo-K42A-OASS can be reconstituted with PLP, suggesting that K42 is not necessary for cofactor binding and formation of the external Schiff base. The apo-K42A-OASS, reconstituted with PLP, shows slow formation of the external aldimine but does not form the alpha-aminoacrylate intermediate on addition of OAS, suggesting that K42 is involved in the abstraction of the alpha-proton in the beta-elimination reaction. The external aldimines formed upon addition of L-Ala or L-Ser are stable and represent a tautomer that absorbs maximally at 420 nm, while L-Cys gives a tautomeric form of the external aldimine that absorbs at 330 nm, and is also seen in the overall reaction after addition of primary amines to the assay system. The use of a small primary amine such as ethylamine or bromoethylamine in the assay system leads to the initial formation of an internal (gamma-thialysine) or external (ethylamine) aldimine followed by the slow formation of the alpha-aminoacrylate intermediate on addition of OAS. Activity could not be fully recovered, and only a single turnover is observed. Data suggest a significant rate enhancement resulting from the presence of K42 for transimination and general base catalysis.

摘要

O-乙酰丝氨酸巯基酶(OASS)是一种依赖于磷酸吡哆醛的酶,它催化β-取代反应,由O-乙酰-L-丝氨酸(OAS)和硫化物形成L-半胱氨酸和乙酸盐。磷酸吡哆醛(PLP)以席夫碱的形式与赖氨酸结合在活性位点上。在本研究中,席夫碱赖氨酸被鉴定为赖氨酸42,并通过定点诱变将其替换为丙氨酸来确定其在OASS反应中的作用。K42A-OASS以与甲硫氨酸或亮氨酸形成的外部醛亚胺形式被分离出来,并且与天然底物不发生反应。脱辅基K42A-OASS可以用PLP进行重构,这表明K42对于辅因子结合和外部席夫碱的形成不是必需的。用PLP重构的脱辅基K42A-OASS显示出外部醛亚胺的形成较慢,但在加入OAS后不形成α-氨基丙烯酸酯中间体,这表明K42参与了β-消除反应中α-质子的夺取。加入L-丙氨酸或L-丝氨酸后形成的外部醛亚胺是稳定的,代表一种在420nm处有最大吸收峰的互变异构体,而L-半胱氨酸则产生一种在330nm处有吸收峰的外部醛亚胺互变异构体,并且在向测定系统中加入伯胺后的整体反应中也能看到。在测定系统中使用小分子伯胺如乙胺或溴乙胺会导致最初形成内部(γ-硫代赖氨酸)或外部(乙胺)醛亚胺,随后在加入OAS后缓慢形成α-氨基丙烯酸酯中间体。活性不能完全恢复,并且只观察到一次周转。数据表明,K42的存在导致转亚胺化和一般碱催化的速率显著提高。

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