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鉴定形成同型 CYP1A2•CYP1A2 复合物的接触区域。

Identification of the contact region responsible for the formation of the homomeric CYP1A2•CYP1A2 complex.

机构信息

Department of Pharmacology and Experimental Therapeutics, and the Stanley S. Scott Cancer Center, Louisiana State University Health Sciences Center, New Orleans, LA.

出版信息

Biochem J. 2021 Jun 11;478(11):2163-2178. doi: 10.1042/BCJ20210269.

Abstract

Previous studies showed that cytochrome P450 1A2 (CYP1A2) forms a homomeric complex that influences its metabolic characteristics. Specifically, CYP1A2 activity exhibits a sigmoidal response as a function of NADPH-cytochrome P450 reductase (POR) concentration and is consistent with an inhibitory CYP1A2•CYP1A2 complex that is disrupted by increasing [POR] (Reed et al. (2012) Biochem. J. 446, 489-497). The goal of this study was to identify the CYP1A2 contact regions involved in homomeric complex formation. Examination of X-ray structure of CYP1A2 implicated the proximal face in homomeric complex formation. Consequently, the involvement of residues L91-K106 (P1 region) located on the proximal face of CYP1A2 was investigated. This region was replaced with the homologous region of CYP2B4 (T81-S96) and the protein was expressed in HEK293T/17 cells. Complex formation and its disruption was observed using bioluminescence resonance energy transfer (BRET). The P1-CYP1A2 (CYP1A2 with the modified P1 region) exhibited a decreased BRET signal as compared with wild-type CYP1A2 (WT-CYP1A2). On further examination, P1-CYP1A2 was much less effective at disrupting the CYP1A2•CYP1A2 homomeric complex, when compared with WT-CYP1A2, thereby demonstrating impaired binding of P1-CYP1A2 to WT-CYP1A2 protein. In contrast, the P1 substitution did not affect its ability to form a heteromeric complex with CYP2B4. P1-CYP1A2 also showed decreased activity as compared with WT-CYP1A2, which was consistent with a decrease in the ability of P1-CYP1A2 to associate with WT-POR, again implicating the P1 region in POR binding. These results indicate that the contact region responsible for the CYP1A2•CYP1A2 homomeric complex resides in the proximal region of the protein.

摘要

先前的研究表明细胞色素 P450 1A2(CYP1A2)形成同源二聚体复合物,影响其代谢特性。具体而言,CYP1A2 活性作为 NADPH-细胞色素 P450 还原酶(POR)浓度的函数表现出 S 形响应,并且与抑制性 CYP1A2•CYP1A2 复合物一致,该复合物通过增加 [POR](Reed 等人(2012 年)生物化学。J. 446, 489-497)被破坏。本研究的目的是确定参与同源二聚体复合物形成的 CYP1A2 接触区域。CYP1A2 的 X 射线结构检查暗示近端表面参与同源二聚体复合物的形成。因此,研究了位于 CYP1A2 近端表面的残基 L91-K106(P1 区)的参与情况。该区域被 CYP2B4 的同源区域(T81-S96)取代,并在 HEK293T/17 细胞中表达该蛋白。使用生物发光共振能量转移(BRET)观察复合物的形成及其破坏。与野生型 CYP1A2(WT-CYP1A2)相比,P1-CYP1A2 的 BRET 信号降低。进一步研究表明,与 WT-CYP1A2 相比,P1-CYP1A2 破坏 CYP1A2•CYP1A2 同源二聚体复合物的能力要差得多,从而表明 P1-CYP1A2 与 WT-CYP1A2 蛋白的结合能力受损。相比之下,该取代不影响其与 CYP2B4 形成异源二聚体复合物的能力。与 WT-CYP1A2 相比,P1-CYP1A2 的活性也降低,这与 P1-CYP1A2 与 WT-POR 结合能力的降低一致,再次表明 P1 区与 POR 结合。这些结果表明,负责 CYP1A2•CYP1A2 同源二聚体复合物的接触区域位于蛋白质的近端区域。

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