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人胆固醇酯转运蛋白的结构-功能关系:使用单克隆抗体的分析

Structure-function relationships of human cholesteryl ester transfer protein: analysis using monoclonal antibodies.

作者信息

Roy P, MacKenzie R, Hirama T, Jiang X C, Kussie P, Tall A, Rassart E, Milne R

机构信息

Departement des Sciences Biologiques, Universite du Quebec a Montreal, Canada.

出版信息

J Lipid Res. 1996 Jan;37(1):22-34.

PMID:8820099
Abstract

Cholesteryl ester transfer protein (CETP), a 476 amino acid glycoprotein, mediates cholesteryl ester (CE), triglyceride, and phospholipid transfer among plasma lipoproteins. A monoclonal antibody (mAb), TP2, specific for an epitope within the last 26 amino acids of CETP has been shown to block all CETP-mediated lipid transfer, apparently by limiting access to lipid-binding sites in the carboxy terminal of CETP. A new panel of 16 anti-human CETP mAbs has now been used to further probe the structure-function relationships of CETP. Of the new mAbs, 9 partially inhibit CETP-mediated CE transfer (24-43%) from HDL to LDL. The corresponding epitopes were mapped within the CETP primary structure by the reactivity of the mAbs with CETP variants having deletions or amino acid substitutions. Of the 9 new, neutralizing mAbs, 6 are specific for epitopes situated between residues 410-450 and two others for epitopes between residues 184-260 and 332-366, respectively. The epitope of one neutralizing mAbs could not be mapped. Therefore, binding of mAbs to epitopes situated in four non-overlapping regions within CETP primary structure that are separated by as many as 280 residues can neutralize CETP-mediated CE transfer. Epitopes of mAbs that do not influence CE transfer activity map to the regions 184-260, 261-331, and 367-409, respectively. When pairs of mAbs were tested for their abilities to mutually compete for binding to immobilized CETP, competition was observed for mAbs specific for epitopes that are distant in CETP primary structure. The cross-competition patterns demonstrate that the carboxy terminal 60% of CETP adopts a compact structure. Together with previous mutagenesis studies, the data suggests that a carboxy terminal neutral lipid binding domain may be in close proximity to a lipoprotein binding region within native CETP.

摘要

胆固醇酯转运蛋白(CETP)是一种由476个氨基酸组成的糖蛋白,介导血浆脂蛋白之间的胆固醇酯(CE)、甘油三酯和磷脂转运。一种针对CETP最后26个氨基酸内表位的单克隆抗体(mAb)TP2已被证明可阻断所有CETP介导的脂质转运,显然是通过限制对CETP羧基末端脂质结合位点的访问来实现的。现在,一组新的16种抗人CETP单克隆抗体已被用于进一步探究CETP的结构-功能关系。在这些新的单克隆抗体中,有9种部分抑制CETP介导的CE从高密度脂蛋白(HDL)向低密度脂蛋白(LDL)的转运(24%-43%)。通过单克隆抗体与具有缺失或氨基酸取代的CETP变体的反应性,将相应的表位定位在CETP一级结构内。在这9种新的中和性单克隆抗体中,6种特异性针对位于410-450位残基之间的表位,另外两种分别针对位于184-260位残基和332-366位残基之间的表位。有一种中和性单克隆抗体的表位无法定位。因此,单克隆抗体与位于CETP一级结构中四个不重叠区域(相隔多达280个残基)内的表位结合可中和CETP介导的CE转运。不影响CE转运活性的单克隆抗体的表位分别定位在184-260、261-331和367-409区域。当测试成对的单克隆抗体相互竞争结合固定化CETP的能力时,观察到针对在CETP一级结构中距离较远的表位的单克隆抗体之间存在竞争。交叉竞争模式表明,CETP羧基末端的60%采用紧密结构。与先前的诱变研究一起,这些数据表明,羧基末端中性脂质结合结构域可能与天然CETP内的脂蛋白结合区域紧密相邻。

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