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Combined use of mass spectrometry and heterologous expression for identification of membrane-interacting peptides in cytochrome P450 46A1 and NADPH-cytochrome P450 oxidoreductase

机译:质谱和异源表达的结合使用可鉴定细​​胞色素P450 46A1和NADPH-细胞色素P450氧化还原酶中的膜相互作用肽

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摘要

Cytochrome P450 46A1 (CYP46A1) and NADPH-cytochrome P450 oxidoreductase (CPR) are the components of the brain microsomal mixed-function monooxygenase system that catalyzes the conversion of cholesterol to 24-hydroxycholesterol. Both CYP46A1 and CPR are monotopic membrane proteins that are anchored to the endoplasmic reticulum via the N-terminal transmembrane domain. The exact mode of peripheral association of CYP46A1 and CPR with the membrane is unknown. Therefore, we studied their membrane topology by using an approach in which solution-exposed portion of heterologously expressed membrane-bound CYP46A1 or CPR was removed by digestion with either trypsin or chymotrypsin followed by extraction of the residual peptides and their identification by mass spectrometry. The identified putative membrane-interacting peptides were mapped onto available crystal structures of CYP46A1 and CPR and the proteins were positioned in the membrane considering spatial location of the missed cleavage sites located within these peptide as well as the flanking residues whose cleavage produced these peptides. Experiments were then carried out to validate the inference from our studies that the substrate, cholesterol, enters CYP46A1 from the membrane. As for CPR, its putative membrane topology indicates that the Q153R and R316W missense mutations found in patients with disordered steroidogenesis are located within the membrane-associated regions. This information may provide insight in the deleterious nature of these mutations.
机译:细胞色素P450 46A1(CYP46A1)和NADPH-细胞色素P450氧化还原酶(CPR)是脑微粒体混合功能单加氧酶系统的组成部分,该系统催化胆固醇向24-羟基胆固醇的转化。 CYP46A1和CPR都是通过N端跨膜结构域锚定到内质网的单分子膜蛋白。 CYP46A1和CPR与膜的外周缔合的确切模式尚不清楚。因此,我们通过使用胰蛋白酶或胰凝乳蛋白酶消化去除异源表达的膜结合的CYP46A1或CPR的溶液暴露部分的方法研究了它们的膜拓扑结构,然后通过提取残留的肽并通过质谱鉴定。将确定的推定的与膜相互作用的肽定位到CYP46A1和CPR的可用晶体结构上,考虑到位于这些肽内的错位切割位点的空间位置以及其切割产生这些肽的侧翼残基,将蛋白定位在膜中。然后进行实验以验证我们的研究推断,底物胆固醇从膜进入CYP46A1。对于CPR,其推测的膜拓扑结构表明,在类固醇生成异常的患者中发现的Q153R和R316W错义突变位于膜相关区域内。该信息可以提供关于这些突变的有害性质的见识。

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