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细胞色素P-450胆固醇侧链裂解酶:一种具有两种功能的酶,即羟化酶和裂解酶。

Cytochrome P-450 C21scc: one enzyme with two actions: hydroxylase and lyase.

作者信息

Hall P F

机构信息

Department of Medicine, Prince of Wales Hospital, Randwick, University of New South Wales, Kensington, Australia.

出版信息

J Steroid Biochem Mol Biol. 1991;40(4-6):527-32. doi: 10.1016/0960-0760(91)90272-7.

DOI:10.1016/0960-0760(91)90272-7
PMID:1958554
Abstract

Testis, adrenal, ovary and placenta contain a microsomal cytochrome P-450 that is capable of converting progesterone to androstenedione and pregnenolone to dehydroepiandrosterone. This conversion requires 17 alpha-hydroxylation followed by C17,20-lyase activity which are both catalyzed by this one protein. Gene cloning and Northern blotting reveal that, at least in man, the same gene is responsible for both testicular and adrenal enzymes. The enzyme was first purified from neonatal pig testis. Both the testicular and adrenal enzymes show a marked preference for the 5-ene substrate (pregnenolone) in keeping with the extensive use of the 5-ene pathway in that species. Affinity alkylation with 17 alpha-bromoacetoxyprogesterone reveals a conserved cysteine at the active site of the enzyme and confirms the conclusion that a single enzyme catalyzes both reactions. Under some circumstances the enzyme catalyzes only 17 alpha-hydroxylation to permit the formation of the C21 steroid cortisol. The regulation of lyase activity, i.e. the determination of the extent to which the second activity is expressed, results from the availability of P-450 reductase. No doubt the greater concentration of this protein in testicular as opposed to adrenal microsomes (x 3.5) is responsible for the production of androgens in the testis and cortisol in the adrenal. Testicular cytochrome b5 also specifically stimulates lyase activity and also causes the porcine enzyme to catalyze a new reaction, i.e. delta 16-synthetase, resulting in synthesis of the important pheromone androsta-4,16-dien-3-one from progesterone.

摘要

睾丸、肾上腺、卵巢和胎盘含有一种微粒体细胞色素P-450,它能够将孕酮转化为雄烯二酮,将孕烯醇酮转化为脱氢表雄酮。这种转化需要17α-羟化作用,随后是C17,20-裂解酶活性,这两种反应均由同一种蛋白质催化。基因克隆和Northern印迹分析表明,至少在人类中,同一个基因负责睾丸和肾上腺中的这两种酶。该酶最初是从新生猪睾丸中纯化出来的。睾丸和肾上腺中的酶对5-烯底物(孕烯醇酮)表现出明显的偏好,这与该物种广泛使用5-烯途径一致。用17α-溴乙酰氧基孕酮进行亲和烷基化反应,揭示了该酶活性位点上一个保守的半胱氨酸,并证实了单一酶催化这两种反应的结论。在某些情况下,该酶仅催化17α-羟化作用,以允许生成C21类固醇皮质醇。裂解酶活性的调节,即第二种活性表达程度的确定,取决于P-450还原酶的可用性。毫无疑问,睾丸微粒体中这种蛋白质的浓度高于肾上腺微粒体(3.5倍),这是睾丸中雄激素和肾上腺中皮质醇产生的原因。睾丸细胞色素b5也能特异性地刺激裂解酶活性,还能使猪的这种酶催化一种新的反应,即δ16-合成酶反应,从而从孕酮合成重要的信息素雄甾-4,16-二烯-3-酮。

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Cytochrome P-450 C21scc: one enzyme with two actions: hydroxylase and lyase.细胞色素P-450胆固醇侧链裂解酶:一种具有两种功能的酶,即羟化酶和裂解酶。
J Steroid Biochem Mol Biol. 1991;40(4-6):527-32. doi: 10.1016/0960-0760(91)90272-7.
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Role of electron transport in the regulation of the lyase activity of C21 side-chain cleavage P-450 from porcine adrenal and testicular microsomes.
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Cytochrome P450c17 from porcine and bovine adrenal catalyses the formation of 5,16-androstadien-3 beta-ol from pregnenolone in the presence of cytochrome b5.来自猪和牛肾上腺的细胞色素P450c17在细胞色素b5存在的情况下催化孕烯醇酮生成5,16-雄二烯-3β-醇。
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Testicular microsomal cytochrome P-450 for C21 steroid side chain cleavage. Spectral and binding studies.用于C21甾体侧链裂解的睾丸微粒体细胞色素P - 450。光谱和结合研究。
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C21 steroid side chain cleavage enzyme from porcine adrenal microsomes. Purification and characterization of the 17 alpha-hydroxylase/C17,20-lyase cytochrome P-450.
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Side-chain cleavage of C21 steroids by testicular microsomal cytochrome P-450 (17 alpha-hydroxylase/lyase): involvement of heme.
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Evidence for involvement of cytochrome P-450-linked oxygenase system in the conversion of C21-steroids to delta 16-C19-steroids catalyzed by pig testicular microsomes.
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The 17, 20-lyase activity of cytochrome p450c17 from human fetal testis favors the delta5 steroidogenic pathway.来自人类胎儿睾丸的细胞色素P450c17的17,20-裂解酶活性有利于Δ5类固醇生成途径。
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Purification and properties of 17 alpha-hydroxylase from microsomes of pig adrenal: a second C21 side-chain cleavage system.
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Cytochrome b5 promotes the synthesis of delta 16-C19 steroids by homogeneous cytochrome P-450 C21 side-chain cleavage from pig testis.
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