Guo Y D, Strugnell S, Back D W, Jones G
Department of Biochemistry, Queen's University, Kingston, ON, Canada.
Proc Natl Acad Sci U S A. 1993 Sep 15;90(18):8668-72. doi: 10.1073/pnas.90.18.8668.
A full-length cDNA for the human liver mitochondrial cytochrome P-450 CYP27 was cloned from a human hepatoma HepG2 cDNA library and then subcloned into the mammalian expression vector pSG5. When CYP27 cDNA was transfected into COS-1 transformed monkey kidney cells along with adrenodoxin cDNA, transfected cells revealed a 10- to 20-fold higher vitamin D3-25-hydroxylase activity than nontransfected cells. Transfected cells were capable of 25-hydroxylation of vitamin D3, 1 alpha-hydroxyvitamin D3 and 1 alpha-hydroxydihydrotachysterol3. In each case they also showed the ability to 26(27)-hydroxylate the cholesterol-like (D3) side chain. The relative rates of 25- and 26(27)-hydroxylation of 1 alpha-hydroxyvitamin D3 approximately mimicked the ratio of products observed in HepG2 cells. Vitamin D2 and 1 alpha-hydroxyvitamin D2, both with the ergosterol-like side chain, were 24- and 26(27)-hydroxylated by CYP27. The rate of side-chain 24-, 25-, or 26(27)-hydroxylation was greater for 1 alpha-hydroxylated vitamin D analogs than for their nonhydroxylated counterparts. We conclude that CYP27 is capable of 24-, 25-, and 26(27)-hydroxylation of vitamin D analogs and that the nature of products is partially dictated by the side chain of the substrate. This work has revealed that the cytochrome P-450 CYP27 may be important in the metabolism of vitamin D analogs used as drugs.
从人肝癌HepG2 cDNA文库中克隆出人类肝脏线粒体细胞色素P - 450 CYP27的全长cDNA,然后亚克隆到哺乳动物表达载体pSG5中。当CYP27 cDNA与肾上腺铁氧化还原蛋白cDNA一起转染到COS - 1转化的猴肾细胞中时,转染细胞显示出比未转染细胞高10至20倍的维生素D3 - 25 - 羟化酶活性。转染细胞能够对维生素D3、1α - 羟基维生素D3和1α - 羟基二氢速甾醇3进行25 - 羟化。在每种情况下,它们还显示出对胆固醇样(D3)侧链进行26(27) - 羟化的能力。1α - 羟基维生素D3的25 - 和26(27) - 羟化相对速率大致模拟了在HepG2细胞中观察到的产物比例。维生素D2和1α - 羟基维生素D2都具有麦角固醇样侧链,它们被CYP27进行24 - 和26(27) - 羟化。1α - 羟基化的维生素D类似物侧链24 -、25 - 或26(27) - 羟化的速率比其未羟化的对应物更高。我们得出结论,CYP27能够对维生素D类似物进行24 -、25 - 和26(27) - 羟化,并且产物的性质部分由底物的侧链决定。这项工作表明细胞色素P - 450 CYP27可能在用作药物的维生素D类似物的代谢中起重要作用。