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人细胞色素 p450 芳香酶的运动和灵活性。

Motion and flexibility in human cytochrome p450 aromatase.

机构信息

Department of Pharmacology, State University of New York Upstate Medical University, Syracuse, New York, United States of America.

出版信息

PLoS One. 2012;7(2):e32565. doi: 10.1371/journal.pone.0032565. Epub 2012 Feb 27.

Abstract

The crystal structures of human placental aromatase in complex with the substrate androstenedione and exemestane have revealed an androgen-specific active site and the structural basis for higher order organization. However, X-ray structures do not provide accounts of movements due to short-range fluctuations, ligand binding and protein-protein association. In this work, we conduct normal mode analysis (NMA) revealing the intrinsic fluctuations of aromatase, deduce the internal modes in membrane-free and membrane-integrated monomers as well as the intermolecular modes in oligomers, and propose a quaternary organization for the endoplasmic reticulum (ER) membrane integration. Dynamics of the crystallographic oligomers from NMA is found to be in agreement with the isotropic thermal factors from the X-ray analysis. Calculations of the root mean square fluctuations of the C-alpha atoms from their equilibrium positions confirm that the rigid-core structure of aromatase is intrinsic regardless of the changes in steroid binding interactions, and that aromatase self-association does not deteriorate the rigidity of the catalytic cleft. Furthermore, NMA on membrane-integrated aromatase shows that the internal modes in all likelihood contribute to breathing of the active site access channel. The collective intermolecular hinge bending and twisting modes provide the flexibility in the quaternary association necessary for membrane integration of the aromatase oligomers. Taken together, fluctuations of the active site, the access channel, and the heme-proximal cavity, and a dynamic quaternary organization could all be essential components of the functional aromatase in its role as an ER membrane-embedded steroidogenic enzyme.

摘要

人胎盘芳香酶与底物雄烯二酮和依西美坦复合物的晶体结构揭示了雄激素特异性活性位点和更高阶组织的结构基础。然而,X 射线结构并不能提供由于短程波动、配体结合和蛋白质-蛋白质相互作用而导致的运动的描述。在这项工作中,我们进行了正常模式分析(NMA),揭示了芳香酶的固有波动,推断了无膜和膜整合单体中的内部模式以及低聚体中的分子间模式,并提出了内质网(ER)膜整合的四级组织。从 NMA 得出的晶体寡聚体动力学与 X 射线分析的各向同性热因子一致。从平衡位置计算 Cα原子的均方根波动证实,芳香酶的刚性核结构是内在的,与甾体结合相互作用的变化无关,并且芳香酶自组装不会降低催化裂缝的刚性。此外,对膜整合的芳香酶进行 NMA 表明,内部模式很可能有助于活性位点进入通道的呼吸。集体的分子间铰链弯曲和扭曲模式为芳香酶低聚体的膜整合提供了必需的四级关联的灵活性。总之,活性位点、进入通道和血红素近端腔的波动以及动态四级组织都可能是 ER 膜嵌入式甾体生成酶功能芳香酶的重要组成部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4fd/3288111/e65a97b76512/pone.0032565.g001.jpg

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