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脂蛋白脂肪酶基因第5外显子错义突变的结构和功能后果。

Structural and functional consequences of missense mutations in exon 5 of the lipoprotein lipase gene.

作者信息

Peterson Jonas, Ayyobi Amir F, Ma Yuanhong, Henderson Howard, Reina Manuel, Deeb Samir S, Santamarina-Fojo Silvia, Hayden Michael R, Brunzell John D

机构信息

Division of Metabolism, Endocrinology, and Nutrition, Department of Medicine, Box 356426, University of Washington Medical Center, Seattle, WA 98195-6426, USA.

出版信息

J Lipid Res. 2002 Mar;43(3):398-406.

Abstract

Missense mutations in exon 5 of the LPL gene are the most common reported cause of LPL deficiency. Exon 5 is also the region with the strongest homology to pancreatic and hepatic lipase, and is conserved in LPL from different species. Mutant LPL proteins from post-heparin plasma from patients homozygous for missense mutations at amino acid positions 176, 188, 194, 205, and 207, and from COS cells transiently transfected with the corresponding cDNAs were quantified and characterized, in an attempt to determine which aspect of enzyme function was affected by each specific mutation. All but one of the mutant proteins were present, mainly as partially denatured LPL monomer, rendering further detailed assessment of their catalytic activity, affinity to heparin, and binding to lipoprotein particles difficult. However, the fresh unstable Gly(188)-->Glu LPL and the stable Ile(194)-->Thr LPL, although in native conformation, did not express lipase activity. It is proposed that many of the exon 5 mutant proteins are unable to achieve or maintain native dimer conformation, and that the Ile(194)-->Thr substitution interferes with access of lipid substrate to the catalytic pocket. These results stress the importance of conformational evaluation of mutant LPL. Absence of catalytic activity does not necessarily imply that the substituted amino acid plays a specific direct role in catalysis.

摘要

脂蛋白脂肪酶(LPL)基因第5外显子的错义突变是报道中LPL缺乏最常见的原因。第5外显子也是与胰腺和肝脂肪酶同源性最强的区域,并且在不同物种的LPL中保守。对来自第176、188、194、205和207位氨基酸错义突变纯合患者的肝素后血浆中的突变LPL蛋白,以及用相应cDNA瞬时转染的COS细胞中的突变LPL蛋白进行定量和表征,以确定每个特定突变影响酶功能的哪方面。除一种突变蛋白外,其他所有突变蛋白均存在,主要以部分变性的LPL单体形式存在,使得对其催化活性、对肝素的亲和力以及与脂蛋白颗粒的结合进行进一步详细评估变得困难。然而,新鲜不稳定的Gly(188)-->Glu LPL和稳定的Ile(194)-->Thr LPL,尽管处于天然构象,但不表达脂肪酶活性。有人提出,许多第5外显子突变蛋白无法达到或维持天然二聚体构象,并且Ile(194)-->Thr取代干扰了脂质底物进入催化口袋。这些结果强调了对突变LPL进行构象评估的重要性。催化活性的缺乏不一定意味着取代的氨基酸在催化中起特定的直接作用。

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