首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Conversion of 7-Dehydrocholesterol to 7-Ketocholesterol Is Catalyzed by Human Cytochrome P450 7A1 and Occurs by Direct Oxidation without an Epoxide Intermediate
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Conversion of 7-Dehydrocholesterol to 7-Ketocholesterol Is Catalyzed by Human Cytochrome P450 7A1 and Occurs by Direct Oxidation without an Epoxide Intermediate

机译:人类细胞色素P450 7A1催化7-脱氢胆固醇向7-酮胆固醇的转化并且在没有环氧中间体的情况下直接氧化发生。

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摘要

7-Ketocholesterol is a bioactive sterol, a potent competitive inhibitor of cytochrome P450 7A1, and toxic in liver cells. Multiple origins of this compound have been identified, with cholesterol being the presumed precursor. Although routes for formation of the 7-keto compound from cholesterol have been established, we found that 7-dehydrocholesterol (the immediate precursor of cholesterol) is oxidized by P450 7A1 to 7-ketocholesterol (kcat/Km = 3 × 104 m−1 s−1). P450 7A1 converted lathosterol (Δ5-dihydro-7-dehydrocholesterol) to a mixture of the 7-keto and 7α,8α-epoxide products (∼1:2 ratio), with the epoxide not rearranging to the ketone. The oxidation of 7-dehydrocholesterol occured with predominant formation of 7-ketocholesterol and with the 7α,8α-epoxide as only a minor product; the synthesized epoxide was stable in the presence of P450 7A1. The mechanism of 7-dehydrocholesterol oxidation to 7-ketocholesterol is proposed to involve a FeIII-O-C-C+ intermediate and a 7,8-hydride shift or an alternative closing to yield the epoxide (Liebler, D. C., and Guengerich, F. P. (1983) Biochemistry 22, 5482–5489). Accordingly, reaction of P450 7A1 with 7-[2H1]dehydrocholesterol yielded complete migration of deuterium in the product 7-ketocholesterol. The finding that 7-dehydrocholesterol is a precursor of 7-ketocholesterol has relevance to an inborn error of metabolism known as Smith-Lemli-Opitz syndrome (SLOS) caused by defective cholesterol biosynthesis. Mutations within the gene encoding 7-dehydrocholesterol reductase, the last enzyme in the pathway, lead to the accumulation of 7-dehydrocholesterol in tissues and fluids of SLOS patients. Our findings suggest that 7-ketocholesterol levels may also be elevated in SLOS tissue and fluids as a result of P450 7A1 oxidation of 7-dehydrocholesterol.
机译:7-酮胆固醇是一种生物活性固醇,是一种有效的竞争性细胞色素P450 7A1抑制剂,对肝细胞有毒。已经鉴定出该化合物的多种来源,其中胆固醇是推测的前体。尽管已经建立了由胆固醇形成7-酮化合物的途径,但我们发现7-脱氢胆固醇(胆固醇的直接前体)被P450 7A1氧化为7-酮胆固醇(kcat / Km = 3×10 6) m −1 s -1 )。 P450 7A1将la固醇(Δ 5 -二氢-7-脱氢胆固醇)转化为7-酮和7α,8α-环氧化合物的混合物(比例约为1:2),环氧化合物未重排至酮。 7-脱氢胆固醇的氧化主要与7-酮胆固醇的形成有关,而7α,8α-环氧化合物只是次要产物。合成的环氧化物在P450 7A1存在下是稳定的。提出了将7-脱氢胆固醇氧化为7-酮胆固醇的机理,涉及到Fe III -OCC + 中间体和7,8-氢化物移位或关闭收率。环氧化物(Liebler,DC和Guengerich,FP(1983)Biochemistry 22,5482-5489)。因此,P450 7A1与7-[ 2 H1]脱氢胆固醇的反应产生了氘在产物7-酮胆固醇中的完全迁移。 7-脱氢胆固醇是7-酮胆固醇的前体的发现与胆固醇生物合成缺陷引起的先天性代谢错误(史密斯-莱姆利-奥普兹综合征(SLOS))有关。 7-脱氢胆固醇还原酶(该途径中的最后一种酶)的编码基因内的突变导致SLOS患者的组织和体液中7-脱氢胆固醇的积累。我们的发现表明,由于P450 7A1氧化7-脱氢胆固醇,SLOS组织和体液中7-酮胆固醇水平也可能升高。

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