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人胎盘S-腺苷同型半胱氨酸水解酶中半胱氨酸残基的化学修饰和定点诱变

Chemical modification and site-directed mutagenesis of cysteine residues in human placental S-adenosylhomocysteine hydrolase.

作者信息

Yuan C S, Ault-Riché D B, Borchardt R T

机构信息

Department of Biochemistry, The University of Kansas, Lawrence, Kansas 66047, USA.

出版信息

J Biol Chem. 1996 Nov 8;271(45):28009-16. doi: 10.1074/jbc.271.45.28009.

Abstract

Human placental S-adenosylhomocysteine (AdoHcy) hydrolase (EC 3.3.1. 1) was inactivated by 5',5-dithiobis(2-nitrobenzoic acid) following pseudo-first-order kinetics. Modification of three of the 10 cysteine residues per enzyme subunit resulted in complete inactivation of the enzyme. The three modified cysteine residues were identified as Cys113, Cys195, and Cys421, respectively, by protein sequencing after modification with [1-14C]iodoacetamide. Of the three modifiable cysteines, Cys113 and Cys195 could be protected from modification in the presence of the substrate adenosine (Ado), which also protected the enzyme from inactivation. On the other hand, Cys421 was not protected by Ado, and modification of Cys421 alone did not affect the enzyme activity. To verify whether some of these cysteine residues are important for the enzyme catalysis, these three cysteine residues were replaced by either serine or aspartic acid using site-directed mutagenesis. Mutants of both Cys113 (C113S and C113D) and Cys421 (C421S and C421D) had enzyme activities similar to that of the wild-type enzyme, and only slight changes were observed in the steady-state kinetics measured in both the synthetic and hydrolytic directions. However, mutants of Cys195 (C195D and C195S) displayed drastically reduced enzyme activities, and kcat values were only 7 and 12% of that of the wild-type enzyme, respectively, resulting in a calculated loss in binding energy (DeltaDeltaG) of approximate 1 Kcal/mol. The Cys195 mutants were capable of catalyzing both the 3'-oxidative and 5'-hydrolytic reactions, as evidenced by the reduction of E.NAD+ to NADH and formation of the 5'-hydrolytic product when incubated with (E)-5', 6'-didehydro-6'-deoxy-6'-chlorohomoadenosine at rates comparable with those catalyzed by the wild-type enzyme. However, mutations of the Cys195 severely altered the 3'-reduction potential as evidenced by the drastic reduction in the rate of [2,8-3H]Ado release from the E-NADH.[2,8-3H]3'-keto-Ado complex. Circular dichroism studies of the Cys195 mutants confirmed that the observed effects are not due to changes in secondary structure. These results suggested that the Cys195 is involved in the catalytic center and may play an important role in maintaining the 3'-reduction potential for effective release of the reaction products and regeneration of the active form (NAD+ form) of the enzyme; the Cys113 is located in or near the substrate binding site, but plays no role beneficial to the catalysis; and the Cys421 is a nonessential residue, which also explains why Cys421 does not occur in any other known AdoHcy hydrolases.

摘要

人胎盘S-腺苷同型半胱氨酸(AdoHcy)水解酶(EC 3.3.1.1)被5',5'-二硫代双(2-硝基苯甲酸)以假一级动力学方式灭活。每个酶亚基的10个半胱氨酸残基中有3个被修饰导致酶完全失活。在用[1-14C]碘乙酰胺修饰后通过蛋白质测序分别鉴定出这3个被修饰的半胱氨酸残基为Cys113、Cys195和Cys421。在这3个可修饰的半胱氨酸中,在底物腺苷(Ado)存在下Cys113和Cys195可免受修饰,这也保护酶不被灭活。另一方面,Cys421不受Ado保护,单独修饰Cys421不影响酶活性。为了验证这些半胱氨酸残基中的一些是否对酶催化很重要,使用定点诱变将这3个半胱氨酸残基分别替换为丝氨酸或天冬氨酸。Cys113(C113S和C113D)和Cys421(C421S和C421D)的突变体具有与野生型酶相似的酶活性,并且在合成和水解方向上测量的稳态动力学中仅观察到轻微变化。然而,Cys195的突变体(C195D和C195S)显示酶活性大幅降低,kcat值分别仅为野生型酶的7%和12%,导致计算出的结合能损失(ΔΔG)约为1千卡/摩尔。Cys195突变体能够催化3'-氧化和5'-水解反应,当与(E)-5',6'-二脱氢-6'-脱氧-6'-氯高腺苷一起孵育时,E.NAD+还原为NADH以及5'-水解产物的形成证明了这一点,其速率与野生型酶催化的速率相当。然而,Cys195的突变严重改变了3'-还原电位,这通过从E-NADH.[2,8-3H]3'-酮基-Ado复合物中释放[2,8-3H]Ado的速率大幅降低得到证明。Cys195突变体的圆二色性研究证实观察到的效应不是由于二级结构的变化。这些结果表明Cys195参与催化中心,并且可能在维持3'-还原电位以有效释放反应产物和使酶的活性形式(NAD+形式)再生中起重要作用;Cys113位于底物结合位点内或附近,但对催化没有有益作用;并且Cys421是一个非必需残基,这也解释了为什么Cys421在任何其他已知的AdoHcy水解酶中都不出现。

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