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人脂蛋白脂肪酶中高度保守丝氨酸的结构和功能作用。丝氨酸132对酶催化至关重要的证据。

Structural and functional roles of highly conserved serines in human lipoprotein lipase. Evidence that serine 132 is essential for enzyme catalysis.

作者信息

Faustinella F, Smith L C, Semenkovich C F, Chan L

机构信息

Department of Cell Biology, Baylor College of Medicine, Houston, Texas 77030.

出版信息

J Biol Chem. 1991 May 25;266(15):9481-5.

PMID:1903387
Abstract

The structure of human lipoprotein lipase was recently deduced from its cDNA sequence. It contains 8 serine residues (residues 45, 132, 143, 172, 193, 244, 251, and 363) that are absolutely conserved in both lipoprotein lipase and hepatic lipase across all species studied. The high homology between lipoprotein lipase, hepatic lipase, and pancreatic lipase suggests that the catalytic functions of these enzymes share a common mechanism and that one of the 8 conserved serines in human lipoprotein lipase must play a catalytic role as does serine 152 in the case of pancreatic lipase (Winkler, F. K., D'Arcy, A., and Hunziker, W. Nature 343, 771-774). We expressed wild-type and site-specific mutants of human lipoprotein lipase in COS cells in vitro. We produced two to four substitution mutants involving each of the 8 serines and assayed a total of 22 mutants for both enzyme activity and the amount of immunoreactive enzyme mass produced. Immunoreactive lipase was detected in all cases. With the exception of Ser132, for each of the 8 serine mutants we studied, at least one of several mutants at each position showed detectable enzyme activity. All three substitution mutants at Ser132, Ser----Thr, Ser----Ala, and Ser----Asp, were totally inactive. Ser132 occurs in the consensus sequence Gly-Xaa-Ser-Xaa-Gly present in all serine proteinases and in human pancreatic lipase. The x-ray crystallography structure of human pancreatic lipase suggests that the analogous serine residue in human pancreatic lipase, Ser152, is the nucleophilic residue essential for catalysis. Our biochemical data strongly support the conclusion that Ser132 in human lipoprotein lipase is the crucial residue required for enzyme catalysis. The observed specific activities of the variants involving the other seven highly conserved serines in human lipoprotein lipase are consistent with the interpretation that this enzyme has a three-dimensional structure very similar to that of human pancreatic lipase.

摘要

人类脂蛋白脂肪酶的结构最近已根据其cDNA序列推导得出。它含有8个丝氨酸残基(第45、132、143、172、193、244、251和363位残基),在所有已研究物种的脂蛋白脂肪酶和肝脂肪酶中这些残基都是绝对保守的。脂蛋白脂肪酶、肝脂肪酶和胰脂肪酶之间的高度同源性表明,这些酶的催化功能具有共同机制,并且人类脂蛋白脂肪酶中8个保守丝氨酸之一必定像胰脂肪酶中的丝氨酸152那样发挥催化作用(温克勒,F.K.,达西,A.,洪齐克尔,W.《自然》343卷,771 - 774页)。我们在体外的COS细胞中表达了人类脂蛋白脂肪酶的野生型和位点特异性突变体。我们制备了涉及8个丝氨酸中每一个的两到四个替代突变体,并对总共22个突变体的酶活性和产生的免疫反应性酶量进行了测定。在所有情况下都检测到了免疫反应性脂肪酶。除了Ser132,对于我们研究的8个丝氨酸突变体中的每一个,每个位置的几个突变体中至少有一个显示出可检测到的酶活性。Ser132处的所有三个替代突变体,即Ser→Thr、Ser→Ala和Ser→Asp,都完全没有活性。Ser132存在于所有丝氨酸蛋白酶和人类胰脂肪酶中的共有序列Gly - Xaa - Ser - Xaa - Gly中。人类胰脂肪酶的X射线晶体学结构表明,人类胰脂肪酶中类似的丝氨酸残基Ser152是催化所必需的亲核残基。我们的生化数据有力地支持了这样的结论,即人类脂蛋白脂肪酶中的Ser132是酶催化所需的关键残基。在人类脂蛋白脂肪酶中涉及其他七个高度保守丝氨酸的变体所观察到的比活性与该酶具有与人类胰脂肪酶非常相似的三维结构这一解释是一致的。

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