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牛肝脏胞质二氢二醇脱氢酶的定点诱变研究:天冬氨酸-50、酪氨酸-55、赖氨酸-84、组氨酸-117、半胱氨酸-145和半胱氨酸-193在酶活性中的作用。

Site-directed mutagenesis studies of bovine liver cytosolic dihydrodiol dehydrogenase: the role of Asp-50, Tyr-55, Lys-84, His-117, Cys-145 and Cys-193 in enzymatic activity.

作者信息

Terada T, Fujita N, Sugihara Y, Sato R, Takagi T, Maeda M

机构信息

Laboratory of Biochemistry and Molecular Biology, Graduate School of Pharmaceutical Sciences, Osaka University, 1-6 Yamada-oka, Suita, 565-0871, Osaka, Japan.

出版信息

Chem Biol Interact. 2001 Jan 30;130-132(1-3):833-45. doi: 10.1016/s0009-2797(00)00239-8.

Abstract

A previous report on the cloning, bacterial expression and purification of bovine liver cytosolic dihydrodiol dehydrogenase (DD3) cDNA (1,330 bp in full length) using pKK223-3 expression vector characterize the properties of the recombinant DD3 in the aspects of substrate specificity and inhibitor sensitivity (Terada et al., Adv. Exp. Biol. Res. 414 (1997) 543-53). The nucleotide sequence of this DD3 cDNA completely matches that of bovine liver-type prostaglandin F synthase (PGFS) (Suzuki et al., J. Biol. Chem. 274 (1999) 241-8). In the present study, a large amount of recombinant DD3 (rDD3) was expressed in Escherichia coli BL21 (DE3) with a pET28a expression vector. The recombinant DD3 (rDD3) was easily and quickly purified to an apparent homogeneity with one step column chromatography of Ni(2+)-affinity resin. The rDD3 showed essentially the same substrate specificity and inhibitor sensitivity as purified liver DD3 (DD3). To analyze the role of amino acid residues of DD3 in its enzymatic activity, site-directed mutagenesis of DD3 with PCR method was performed. The results of the analyses of these mutants in the aspects of substrate specificity and cofactor-binding suggested a variety of functions in the enzymatic activity: as an active site Tyr-55 may act as a general acid and Asp-50, Lys-84 and His-117 may play an important role in the control of protonation of Tyr-55 as a general acid in the dehydrogenase activity under higher pH conditions, though these residues may not be involved in reductase activity under lower pH conditions. Though the mutated DD3s (Cys to Ser) did not show significant differences in their substrate specificities, these mutants showed different sensitivities to SH-reagents. Present results indicate that Cys-193 may play an important role in the modulation of enzymatic activity under redox conditions generated with GSH+GSSG among five cysteines in DD3.

摘要

先前有一份关于使用pKK223 - 3表达载体克隆、细菌表达和纯化牛肝细胞质二氢二醇脱氢酶(DD3)cDNA(全长1330 bp)的报告,该报告从底物特异性和抑制剂敏感性方面对重组DD3的特性进行了表征(寺田等人,《实验生物学研究进展》414卷(1997年)543 - 53页)。此DD3 cDNA的核苷酸序列与牛肝型前列腺素F合酶(PGFS)的序列完全匹配(铃木等人,《生物化学杂志》274卷(1999年)241 - 248页)。在本研究中,用pET28a表达载体在大肠杆菌BL21(DE3)中大量表达了重组DD3(rDD3)。通过Ni(2 +) - 亲和树脂一步柱层析,重组DD3(rDD3)很容易且快速地被纯化至表观均一性。rDD3表现出与纯化的肝脏DD3(DD3)基本相同的底物特异性和抑制剂敏感性。为了分析DD3氨基酸残基在其酶活性中的作用,采用PCR方法对DD3进行了定点诱变。对这些突变体在底物特异性和辅因子结合方面的分析结果表明,在酶活性中存在多种功能:作为活性位点,Tyr - 55可能作为一般酸起作用,而Asp - 50、Lys - 84和His - 117在较高pH条件下作为脱氢酶活性中一般酸的Tyr - 55的质子化控制中可能起重要作用,尽管这些残基在较低pH条件下可能不参与还原酶活性。虽然突变的DD3s(Cys突变为Ser)在底物特异性上没有显示出显著差异,但这些突变体对SH - 试剂表现出不同的敏感性。目前的结果表明,在DD3的五个半胱氨酸中,Cys - 193可能在由GSH + GSSG产生的氧化还原条件下对酶活性的调节中起重要作用。

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