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首页> 外文期刊>Journal of Lipid Research >Oxidation of 7-dehydrocholesterol and desmosterol by human cytochrome P450 46A1
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Oxidation of 7-dehydrocholesterol and desmosterol by human cytochrome P450 46A1

机译:人类细胞色素P450 46A1氧化7-脱氢胆固醇和去氢胆固醇

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摘要

Cytochrome P450 (P450 or CYP) 46A1 is expressed in brain and has been characterized by its ability to oxidize cholesterol to 24S-hydroxycholesterol. In addition, the same enzyme is known to further oxidize 24S-hydroxycholesterol to the 24,25- and 24,27-dihydroxy products, as well as to catalyze side-chain oxidations of 7α-hydroxycholesterol and cholestanol. As precursors in the biosynthesis of cholesterol, 7-dehydrocholesterol has not been found to be a substrate of P450 46A1 and desmosterol has not been previously tested. However, 24-hydroxy-7-dehydrocholesterol was recently identified in brain tissues, which prompted us to reexamine this enzyme and its potential substrates. Here we report that P450 46A1 oxidizes 7-dehydrocholesterol to 24-hydroxy-7- dehydrocholesterol and 25-hydroxy-7-dehydrocholesterol, as confirmed by LC-MS and GC-MS. Overall, the catalytic rates of formation increased in the order of 24-hydroxy-7-dehydrocholesterol < 24-hydroxycholesterol < 25-hydroxy-7-dehydrocholesterol from their respective precursors, with a ratio of 1:2.5:5. In the case of desmosterol, epoxidation to 24S,25-epoxycholesterol and 27-hydroxylation was observed, at roughly equal rates. The formation of these oxysterols in the brain may be of relevance in Smith-Lemli-Opitz syndrome, desmosterolosis, and other relevant diseases, as well as in signal transduction by lipids.
机译:细胞色素P450(P450或CYP)46A1在大脑中表达,其特征是能够将胆固醇氧化为24S-羟基胆固醇。另外,已知相同的酶将24S-羟基胆固醇进一步氧化成24,25-和24,27-二羟基产物,以及催化7α-羟基胆固醇和胆固醇的侧链氧化。作为胆固醇生物合成中的前体,尚未发现7-脱氢胆固醇是P450 46A1的底物,而去氢雌甾醇尚未经过测试。但是,最近在脑组织中发现了24-hydroxy-7-dehydrocholesterol,这促使我们重新检查该酶及其潜在的底物。在这里,我们报道P450 46A1将7-脱氢胆固醇氧化为24-羟基-7-脱氢胆固醇和25-羟基-7-脱氢胆固醇,如LC-MS和GC-MS所证实。总体而言,从它们各自的前体开始,形成的催化速率以24-羟基-7-脱氢胆固醇<24-羟基胆固醇<25-羟基-7-脱氢胆固醇的顺序增加,比例为1:2.5:5。在去甾醇的情况下,观察到环氧化成24S,25-环氧胆固醇和27-羟基化的速率大致相等。这些氧固醇在大脑中的形成可能与Smith-Lemli-Opitz综合征,去油固醇过多症和其他相关疾病以及脂质的信号转导有关。

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