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蜡样芽孢杆菌中偏好磷脂酰胆碱的磷脂酶C的一般碱催化作用:Glu4和Asp55的作用。

General base catalysis by the phosphatidylcholine-preferring phospholipase C from Bacillus cereus: the role of Glu4 and Asp55.

作者信息

Martin S F, Hergenrother P J

机构信息

Department of Chemistry and Biochemistry, The University of Texas at Austin 78712, USA.

出版信息

Biochemistry. 1998 Apr 21;37(16):5755-60. doi: 10.1021/bi972948k.

Abstract

To assess what roles the active site residues Glu4 and Asp55 of the phosphatidylcholine-preferring phospholipase C of Bacillus cereus (PLCBc) might play in binding and catalysis, selected mutants were prepared through site-directed mutagenesis of the plc gene. The mutants were then expressed in Escherichia coli and purified as fusion proteins with the maltose binding protein (MBP). Kinetic analysis showed that mutations at Glu4 had only modest effects on the catalytic activity, whereas those at Asp55 led to proteins whose values for kcat/KM were 10(4)-10(6) times less than that of the wild-type enzyme. The modest decrease in catalytic activity and the pH-dependent profile of the E4L mutant strongly suggest that glutamic acid at position 4 is not the general base in the PLCBc-catalyzed reaction. Rather, the results support the hypothesis that Glu4 is primarily involved in substrate binding, perhaps by electrostatic stabilization of the positive charge of the choline moiety of the phosphatidylcholine substrate. Examination of X-ray crystallographic data of PLCBc and its various complexes reveals that the carboxylate side chain of Asp55 is positioned such that it could activate a water for nucleophilic attack on the substrate or serve as a ligand for Zn1. However, the involvement of the side chain of Asp55 as an important Zn1 ligand is not consistent with the atomic absorption and thermostability data obtained for the D55L mutant, which are virtually identical with that of the wild-type enzyme. The large reduction in the measured kcat/KM of the D55E, D55N, and D55L mutants of PLCBc indicates that Asp55 plays a critical role in catalysis and likely serves as the general base in the hydrolysis of phosphatidylcholine by PLCBc.

摘要

为了评估蜡样芽孢杆菌磷脂酰胆碱偏好性磷脂酶C(PLCBc)的活性位点残基Glu4和Asp55在结合和催化过程中可能发挥的作用,通过对plc基因进行定点诱变制备了选定的突变体。然后将这些突变体在大肠杆菌中表达,并作为与麦芽糖结合蛋白(MBP)的融合蛋白进行纯化。动力学分析表明,Glu4位点的突变对催化活性只有适度影响,而Asp55位点的突变导致蛋白质的kcat/KM值比野生型酶低10^4 - 10^6倍。E4L突变体催化活性的适度降低以及pH依赖性曲线强烈表明,4位的谷氨酸不是PLCBc催化反应中的通用碱。相反,结果支持这样的假设,即Glu4主要参与底物结合,可能是通过对磷脂酰胆碱底物胆碱部分正电荷的静电稳定作用。对PLCBc及其各种复合物的X射线晶体学数据的研究表明,Asp55的羧酸盐侧链的定位使其能够激活一个水分子对底物进行亲核攻击,或者作为Zn1的配体。然而,Asp55侧链作为重要的Zn1配体的参与与D55L突变体获得的原子吸收和热稳定性数据不一致,这些数据与野生型酶的数据几乎相同。PLCBc的D55E、D55N和D55L突变体的kcat/KM测量值大幅降低,表明Asp55在催化中起关键作用,并且可能是PLCBc水解磷脂酰胆碱时的通用碱。

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