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体内对依泽替米贝的反应性与尼曼-匹克C1样1(NPC1L1)结合亲和力相关:多种物种NPC1L1直系同源物的比较。

In vivo responsiveness to ezetimibe correlates with niemann-pick C1 like-1 (NPC1L1) binding affinity: Comparison of multiple species NPC1L1 orthologs.

作者信息

Hawes Brian E, O'neill Kim A, Yao Xiaorui, Crona James H, Davis Harry R, Graziano Michael P, Altmann Scott W

机构信息

Department of Cardiovascular/Metabolic Disease, Schering Plough Research Institute, Kenilworth, New Jersey, USA.

出版信息

Mol Pharmacol. 2007 Jan;71(1):19-29. doi: 10.1124/mol.106.027896. Epub 2006 Sep 27.

DOI:10.1124/mol.106.027896
PMID:17005902
Abstract

Ezetimibe is the first in class 2-azetidinone that decreases plasma cholesterol by blocking intestinal cholesterol absorption. Ezetimibe effectively reduces plasma cholesterol in several species including human, monkey, dog, hamster, rat, and mouse, but the potency ranges widely. One potential factor responsible for this variation in responsiveness is diversity in ezetimibe metabolism. After oral administration, ezetimibe is glucuronidated. Both ezetimibe and the glucuronide lower plasma cholesterol; however, the glucuronide exhibits greater potency. Recent identification of Niemann-Pick C1 Like-1 (NPC1L1) as the molecular target of ezetimibe enables direct binding studies to be performed. Here, we report the cloning of NPC1L1 derived from multiple species and assess amino acid sequence homology among human, monkey, dog, hamster, rat, and mouse. The rank order of affinity of glucuronidated ezetimibe for NPC1L1 in each species correlates with the rank order of in vivo activity with monkey > dog > hamster and rat >> mouse. Ezetimibe analogs that bind to NPC1L1 exhibit in vivo cholesterol-lowering activity, whereas compounds that do not bind NPC1L1 are inactive. Specific structural components of ezetimibe are identified as critical for binding to NPC1L1. The results demonstrate that small variations in ezetimibe structure or in NPC1L1 amino acid sequence can profoundly influence ezetimibe/NPC1L1 interaction and consequently in vivo activity. The results demonstrate that the ability of compounds to bind to NPC1L1 is the major determinant of in vivo responsiveness.

摘要

依折麦布是首个上市的2-氮杂环丁酮类药物,它通过阻断肠道胆固醇吸收来降低血浆胆固醇水平。依折麦布能有效降低包括人类、猴子、狗、仓鼠、大鼠和小鼠在内的多种物种的血浆胆固醇,但效力范围差异很大。导致这种反应性差异的一个潜在因素是依折麦布代谢的多样性。口服给药后,依折麦布会发生葡萄糖醛酸化。依折麦布及其葡萄糖醛酸苷均可降低血浆胆固醇;然而,葡萄糖醛酸苷的效力更强。最近,尼曼-匹克C1样1蛋白(NPC1L1)被确定为依折麦布的分子靶点,这使得直接结合研究得以开展。在此,我们报告了多个物种来源的NPC1L1的克隆,并评估了人类、猴子、狗、仓鼠、大鼠和小鼠之间的氨基酸序列同源性。葡萄糖醛酸化依折麦布对各物种NPC1L1的亲和力排序与体内活性排序相关,即猴子>狗>仓鼠和大鼠>>小鼠。与NPC1L1结合的依折麦布类似物具有体内降胆固醇活性,而不与NPC1L1结合的化合物则无活性。依折麦布的特定结构成分被确定为与NPC1L1结合的关键因素。结果表明,依折麦布结构或NPC1L1氨基酸序列的微小变化可深刻影响依折麦布/NPC1L1相互作用,进而影响体内活性。结果表明,化合物与NPC1L1结合的能力是体内反应性的主要决定因素。

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引用本文的文献

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