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25-羟胆固醇-7α-羟化酶(CYP7B1)的比较建模:配体结合及遗传性痉挛性截瘫 5 型 CYP7B1 突变的分析。

Comparative modeling of 25-hydroxycholesterol-7α-hydroxylase (CYP7B1): ligand binding and analysis of hereditary spastic paraplegia type 5 CYP7B1 mutations.

机构信息

Medicinal Chemistry, Welsh School of Pharmacy, Cardiff University, King Edward VII Avenue, Cardiff, CF10 3NB, UK.

出版信息

J Mol Model. 2012 Feb;18(2):441-53. doi: 10.1007/s00894-011-1084-6. Epub 2011 May 4.

Abstract

CYP7B1 mutations have been linked directly with the neurodegenerative disease hereditary spastic paraplegia (HSP), with mutations in the CYP7B1 gene identified as being directly responsible for autosomal recessive HSP type 5A (SPG5). To evaluate the potential impact of CYP7B1 mutations identified in SPG5 on binding and protein function, a comparative model of cytochrome P450 7B1 (CYP7B1) was constructed using human CYP7A1 as a template during model construction. The secondary structure was predicted using the PSIPRED and GOR4 prediction methods, the lowest energy CYP7B1 model was generated using MOE, and then this model was assessed in terms of stereochemical quality and the side chain environment using RAMPAGE, Verify3D and ProSA. Evaluation of the active site residues of the CYP7B1 model and validation of the active site architecture were performed via molecular docking experiments: the docking of the substrates 25-hydroxycholesterol and 27-hydroxycholesterol and the inhibitor 3α-Adiol identified structurally and functionally important residues. Mutational analysis of CYP7B1 amino acid mutations related to hereditary spastic paraplegia type 5 considered phosphorylation, ligand/substrate binding and the structural roles of mutated amino acid residues, with R112, T297 and S363 mutations expected to have a direct impact on ligand binding, while mutations involving R417 would indirectly affect ligand binding as a result of impairment in catalytic function.

摘要

CYP7B1 基因突变与神经退行性疾病遗传性痉挛性截瘫(HSP)直接相关,CYP7B1 基因的突变被认为是常染色体隐性 HSP 型 5A(SPG5)的直接原因。为了评估在 SPG5 中发现的 CYP7B1 突变对结合和蛋白质功能的潜在影响,在模型构建过程中使用人 CYP7A1 作为模板构建了细胞色素 P450 7B1(CYP7B1)的比较模型。使用 PSIPRED 和 GOR4 预测方法预测二级结构,使用 MOE 生成最低能量 CYP7B1 模型,然后使用 RAMPAGE、Verify3D 和 ProSA 评估模型的立体化学质量和侧链环境。通过分子对接实验评估 CYP7B1 模型的活性位点残基并验证活性位点结构:对接底物 25-羟胆固醇和 27-羟胆固醇以及抑制剂 3α-Adiol,确定了结构和功能重要的残基。对与遗传性痉挛性截瘫 5 型相关的 CYP7B1 氨基酸突变进行突变分析,考虑了磷酸化、配体/底物结合以及突变氨基酸残基的结构作用,预计 R112、T297 和 S363 突变将直接影响配体结合,而涉及 R417 的突变将由于催化功能受损而间接影响配体结合。

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