首页> 外文OA文献 >Structural Study of Interaction between the FMN Binding Domain of Cytochrome P450 Reductase and Its Redox Partners – Cytochrome P450/Cytochrome c by NMR and NMR Characterization of Monomeric and Oligomeric Conformations of Human Calcitonin and Its Interaction with EGCG.
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Structural Study of Interaction between the FMN Binding Domain of Cytochrome P450 Reductase and Its Redox Partners – Cytochrome P450/Cytochrome c by NMR and NMR Characterization of Monomeric and Oligomeric Conformations of Human Calcitonin and Its Interaction with EGCG.

机译:细胞色素p450还原酶的FmN结合域与其氧化还原伙伴 - 细胞色素p450 /细胞色素c的相互作用的结构研究通过核磁共振和核磁共振表征人降钙素的单体和寡聚构象及其与EGCG的相互作用。

摘要

Cytochrome P450 reductase (CPR) is a diflavin protein which donates electrons to a variety of microsomal cytochrome P450s, heme oxygenase, cytochrome b5, cytochrome c as well as therapeutic prodrugs. It plays an indispensable role in the cytochrome P450 monooxygenase system, which is responsible for the metabolism of myriads of endogenous compounds as well as exogenous compounds. In order to understand the electron transfer mechanism between CPR and its redox partners and get an better insight into its physiological function, it is essential to obtain detailed structural information on the electron transfer complexes. This thesis aims to unveil the structures of electron transfer complexes formed between the FMN binding domain (FBD) of CPR and its redox partners – cytochrome P450 and cytochrome c, map the binding interfaces of the complexes and propose potential electron transfer pathways. A combination of solution and solid-state NMR techniques, in conjunction with kinetics studies and molecular docking, were utilized for the investigation. Kinetics of electron transfer from FBD to cytochrome P450 and cytochrome c was characterized and compared with wild-type CPR. The results support that conformational gating of CPR plays a key role in the kinetics of interprotein electron transfer. Solution NMR experiments were carried out to map the binding interfaces in the complexes, from which the structural models of the complexes were generated. In addition, high-resolution structures of human calcitonin have been investigated using NMR spectroscopy. Calcitonin is a peptide hormone known for its hypocalcemic effect and its inhibition of bone resorption. While calcitonin has been used in therapy for osteoporosis and Paget's disease for decades, human calcitonin (hCT) forms fibrils in aqueous solution that limit its therapeutic application. The molecular mechanism of fiber formation by calcitonin is not well understood. In this thesis, by solving the high-resolution structures of hCT under two different conditions, we discovered that the peptide undergoes a conformational transition in the process of molecular association. The effect of the polyphenol epigallocatechin 3-gallate (EGCG) on hCT fibrillation was also investigated, which show that EGCG efficiently inhibits fibril formation of hCT by preventing the initial association of hCT before fiber formation.
机译:细胞色素P450还原酶(CPR)是一种双黄素蛋白,可向各种微粒体细胞色素P450,血红素加氧酶,细胞色素b5,细胞色素c以及治疗性前药提供电子。它在细胞色素P450单加氧酶系统中起着不可或缺的作用,该系统负责无数种内源性化合物以及外源性化合物的代谢。为了了解CPR及其氧化还原伙伴之间的电子转移机理,并更好地了解其生理功能,获得有关电子转移配合物的详细结构信息至关重要。本文旨在揭示CPR的FMN结合结构域(FBD)及其氧化还原伙伴-细胞色素P450和细胞色素c之间形成的电子转移复合物的结构,绘制复合物的结合界面并提出潜在的电子转移途径。溶液和固态NMR技术的结合,结合动力学研究和分子对接,用于研究。表征了电子从FBD转移到细胞色素P450和细胞色素c的动力学,并将其与野生型CPR进行了比较。结果证明,CPR的构象门控在蛋白间电子转移动力学中起关键作用。进行了溶液NMR实验,以绘制复合物中的结合界面,从而生成了复合物的结构模型。另外,已经使用NMR光谱法研究了人降钙素的高分辨率结构。降钙素是一种肽激素,因其降血钙作用和抑制骨吸收作用而闻名。降钙素已被用于骨质疏松症和Paget病的治疗数十年,而人降钙素(hCT)在水溶液中会形成原纤维,从而限制了其治疗应用。降钙素形成纤维的分子机理尚不清楚。本文通过在两种不同条件下解析hCT的高分辨率结构,发现该肽在分子缔合过程中经历构象转变。还研究了多酚表没食子儿茶素3-没食子酸酯(EGCG)对hCT原纤维形成的影响,表明EGCG通过阻止hCT在纤维形成之前的初始缔合,有效抑制了hCT的原纤维形成。

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    Huang Rui;

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  • 年度 2014
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