Department of Chemistry, Washington State University, Pullman, WA 99164, USA.
Department of Pharmaceutical Sciences, Washington State University, Spokane, WA 99202, USA.
Biomolecules. 2022 Jan 22;12(2):185. doi: 10.3390/biom12020185.
Aiming to elucidate the system-wide effects of the alcohol-induced increase in the content of cytochrome P450 2E1 (CYP2E1) on drug metabolism, we explored the array of its protein-protein interactions (interactome) in human liver microsomes (HLM) with chemical crosslinking mass spectrometry (CXMS). Our strategy employs membrane incorporation of purified CYP2E1 modified with photoreactive crosslinkers benzophenone-4-maleimide and 4-(-succinimidylcarboxy)benzophenone. Exposure of bait-incorporated HLM samples to light was followed by isolating the His-tagged bait protein and its crosslinked aggregates on Ni-NTA agarose. Analyzing the individual bands of SDS-PAGE slabs of thereby isolated protein with the toolset of untargeted proteomics, we detected the crosslinked dimeric and trimeric complexes of CYP2E1 with other drug-metabolizing enzymes. Among the most extensively crosslinked partners of CYP2E1 are the cytochromes P450 2A6, 2C8, 3A4, 4A11, and 4F2, UDP-glucuronosyltransferases (UGTs) 1A and 2B, fatty aldehyde dehydrogenase (ALDH3A2), epoxide hydrolase 1 (EPHX1), disulfide oxidase 1α (ERO1L), and ribophorin II (RPN2). These results demonstrate the exploratory power of the proposed CXMS strategy and corroborate the concept of tight functional integration in the human drug-metabolizing ensemble through protein-protein interactions of the constituting enzymes.
为了阐明酒精诱导细胞色素 P450 2E1(CYP2E1)含量增加对药物代谢的系统影响,我们利用化学交联质谱(CXMS)探索了人肝微粒体(HLM)中 CYP2E1 的蛋白质-蛋白质相互作用(相互作用组)。我们的策略采用用光反应交联剂苯甲酮-4-马来酰亚胺和 4-(-琥珀酰亚胺羧基)苯甲酮修饰纯化的 CYP2E1,使其在膜中掺入。暴露于诱饵掺入的 HLM 样品中的光后,将 His 标记的诱饵蛋白及其交联聚集体在 Ni-NTA 琼脂糖上分离。用非靶向蛋白质组学工具分析由此分离的蛋白质的 SDS-PAGE 板的各个条带,我们检测到 CYP2E1 与其他药物代谢酶的交联二聚体和三聚体复合物。CYP2E1 最广泛交联的伴侣之一是细胞色素 P450 2A6、2C8、3A4、4A11 和 4F2、UDP-葡糖醛酸基转移酶(UGTs)1A 和 2B、脂肪醛脱氢酶(ALDH3A2)、环氧化物水解酶 1(EPHX1)、二硫氧化酶 1α(ERO1L)和核蛋白 II(RPN2)。这些结果证明了所提出的 CXMS 策略的探索性力量,并证实了通过构成酶的蛋白质-蛋白质相互作用,在人类药物代谢组中紧密的功能整合的概念。