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精氨酸53参与猪胰磷脂酶A2活性位点的头部基团特异性。

Arginine 53 is involved in head-group specificity of the active site of porcine pancreatic phospholipase A2.

作者信息

Lugtigheid R B, Otten-Kuipers M A, Verheij H M, De Haas G H

机构信息

Department of Enzymology and Protein Engineering, CBLE, Utrecht, The Netherlands.

出版信息

Eur J Biochem. 1993 Apr 1;213(1):517-22. doi: 10.1111/j.1432-1033.1993.tb17789.x.

Abstract

The X-ray structure of a mutant porcine pancreatic phospholipase A2 inhibitor complex [Thunnissen et al. (1990) Nature 347, 689-691] has been determined. This structure shows several interactions between the sn-2-acyl chain and the phosphate moiety of the inhibitor at sn-3 and the protein. The interactions of the remaining part of the polar head group are less clear. Because Arg53 is in close proximity to the head group, we tested the importance of charge at position 53 on enzymatic activity and specificity. Arg53 has been replaced by a glutamine and a glutamic acid in mutants R53Q and R53E, respectively. The effects of the mutations were tested with both zwitterionic and anionic substrates. With monomeric, zwitterionic, (R,S)-1,2-dihexanoyldithiopropyl-3-phosphocholine as substrate, the mutants R53Q and R53E display twofold and sevenfold, respectively, increased kcat/Km values, composed of increased kcat and decreased Km values. Tested on micelles of zwitterionic (R)-1,2-dioctanoylglycero-3-phosphocholine the mutants R53Q and R53E are more active than the native enzyme, whereas these mutations have an opposite effect on the activity on anionic (R)-1,2-dioctanoylglycero-3-phosphoglycol. Thus, whereas the native enzyme is 0.3 times as active on zwitterionic as on the anionic substrate, these ratios are 1.0 (R53Q) and 1.7 (R53E) for the mutants. No changes in activity were observed with the anionic substrate (R)-1,2-dioctanoylglycero-3-sulfate. Binding studies with substrate-derived inhibitors confirmed the increased affinity for zwitterionic phospholipids and the reduced affinity for anionic phospholipids. The kinetic and binding data indicate the involvement of the charge of residue 53 in head-group specificity and suggest a position of residue 53 closer to the choline or glycol than to the phosphate.

摘要

已确定一种突变型猪胰磷脂酶A2抑制剂复合物的X射线结构[图尼斯森等人(1990年),《自然》347卷,689 - 691页]。该结构显示了sn - 2 - 酰基链与抑制剂sn - 3位的磷酸基团以及蛋白质之间的几种相互作用。极性头部基团其余部分的相互作用则不太清晰。由于精氨酸53靠近头部基团,我们测试了53位电荷对酶活性和特异性的重要性。在突变体R53Q和R53E中,精氨酸53分别被谷氨酰胺和谷氨酸取代。用两性离子和阴离子底物测试了这些突变的影响。以单体两性离子(R,S)-1,2 - 二己酰基二硫代丙基 - 3 - 磷酸胆碱为底物时,突变体R53Q和R53E的kcat/Km值分别增加了两倍和七倍,这是由kcat增加和Km值降低所致。在两性离子(R)-1,2 - 二辛酰甘油 - 3 - 磷酸胆碱的胶束上进行测试时,突变体R53Q和R53E比天然酶更具活性,而这些突变对阴离子(R)-1,2 - 二辛酰甘油 - 3 - 磷酸甘油的活性有相反的影响。因此,天然酶对两性离子底物的活性是对阴离子底物活性的0.3倍,而突变体的这一比例分别为1.0(R53Q)和1.7(R53E)。用阴离子底物(R)-1,2 - 二辛酰甘油 - 3 - 硫酸盐测试时未观察到活性变化。与底物衍生抑制剂的结合研究证实了对两性离子磷脂亲和力增加以及对阴离子磷脂亲和力降低。动力学和结合数据表明53位残基的电荷参与了头部基团特异性,并表明53位残基的位置更靠近胆碱或二醇而不是磷酸。

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