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细胞色素 P450 2C9*14 和 *27 变体与洛沙坦复合物的结构和生物物理分析。

Structural and biophysical analysis of cytochrome P450 2C9*14 and *27 variants in complex with losartan.

机构信息

Department of Pharmaceutical Sciences, Albany College of Pharmacy and Health Sciences, 106 New Scotland Avenue, Albany, NY 12208, USA.

Department of Pharmacology, Larner College of Medicine, University of Vermont, Burlington, VT 05405, USA.

出版信息

J Inorg Biochem. 2024 Sep;258:112622. doi: 10.1016/j.jinorgbio.2024.112622. Epub 2024 May 31.

DOI:10.1016/j.jinorgbio.2024.112622
PMID:38852293
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11285081/
Abstract

The human cytochrome P450 (CYP) 1, 2 and 3 families of enzymes are responsible for the biotransformation of a majority of the currently available pharmaceutical drugs. The highly polymorphic CYP2C9 predominantly metabolizes many drugs including anticoagulant S-warfarin, anti-hypertensive losartan, anti-diabetic tolbutamide, analgesic ibuprofen, etc. There are >80 single nucleotide changes identified in CYP2C9, many of which significantly alter the clearance of important drugs. Here we report the structural and biophysical analysis of two polymorphic variants, CYP2C914 (Arg125His) and CYP2C927 (Arg150Leu) complexed with losartan. The X-ray crystal structures of the CYP2C9*14 and *27 illustrate the binding of two losartan molecules, one in the active site near heme and another on the periphery. Both losartan molecules are bound in an identical conformation to that observed in the previously solved CYP2C9 wild-type complex, however, the number of losartan differs from the wild-type structure, which showed binding of three molecules. Additionally, isothermal titration calorimetry experiments reveal a lower binding affinity of losartan with *14 and *27 variants when compared to the wild-type. Overall, the results provide new insights into the effects of these genetic polymorphisms and suggests a possible mechanism contributing to reduced metabolic activity in patients carrying these alleles.

摘要

人类细胞色素 P450(CYP)1、2 和 3 家族的酶负责生物转化大多数现有的药物。高度多态性的 CYP2C9 主要代谢许多药物,包括抗凝 S-华法林、抗高血压洛沙坦、抗糖尿病甲苯磺丁脲、镇痛药布洛芬等。在 CYP2C9 中已经鉴定出超过 80 个单核苷酸变化,其中许多显著改变了重要药物的清除率。在这里,我们报告了与洛沙坦结合的两种多态变体 CYP2C914(Arg125His)和 CYP2C927(Arg150Leu)的结构和生物物理分析。CYP2C9*14 和 *27 的 X 射线晶体结构说明了两种洛沙坦分子的结合,一种在靠近血红素的活性部位,另一种在周围。两种洛沙坦分子都以与以前解决的 CYP2C9 野生型复合物中观察到的相同构象结合,但洛沙坦分子的数量与野生型结构不同,野生型结构显示结合了三个分子。此外,等温滴定量热实验表明,与野生型相比,*14 和 *27 变体与洛沙坦的结合亲和力较低。总的来说,这些结果提供了对这些遗传多态性影响的新见解,并提出了一种可能的机制,导致携带这些等位基因的患者代谢活性降低。

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