Rahmaniyan Mehrdad, Patrick Kennerly, Bell Norman H
Department of Medicine, Medical University of South Carolina, Strom Thurmond Research Building, Charleston, SC 29425, USA.
Am J Physiol Endocrinol Metab. 2005 Apr;288(4):E753-60. doi: 10.1152/ajpendo.00201.2004. Epub 2004 Dec 7.
Studies were performed to further characterize the male-specific hepatic recombinant microsomal vitamin D 25-hydroxlase CYP2C11, expressed in baculovirus-infected insect cells, and determine whether it is also a vitamin D 24-hydroxylase. 25- and 24-hydroxylase activities were compared with those of 10 other recombinant hepatic microsomal cytochrome P-450 enzymes expressed in baculovirus-infected insect cells. Each of them 25-hydroxylated vitamin D2, vitamin D3, 1alpha-hydroxyvitamin D2 (1alphaOHD2), and 1alpha-hydroxyvitamin D3 (1alphaOHD3). CYP2C11 had the greatest activity with these substrates, except vitamin D3, which had the same activity as four of the other enzymes. The descending order of 25-hydroxylation by CYP2C11 was 1alphaOHD3 > 1alphaOHD2 > vitamin D2 > vitamin D3. Each of the recombinant cytochrome P-450 enzymes 24-hydroxylated 1alphaOHD2. CYP2C11 had the greatest activity. 24-Hydroxylation of 1alphaOHD3 was very low, and there was none with vitamin D3. Only CYP2C11 24-hydroxylated vitamin D2. Structures of vitamin D metabolites, including 24-hydroxyvitamin D2, 1,24(S)-dihydroxyvitamin D2, and 1,24-dihydroxyvitamin D3, were confirmed by HPLC and gas chromatography retention times and characteristic mass spectrometric fragmentation patterns. In male rats, hypophysectomy significantly reduced body weight, liver weight, hepatic CYP2C11 mRNA expression, and 24- and 25-hydroxylation of 1alphaOHD2. Expression of CYP2J3 and CYP2R1 mRNA did not change. In male rat hepatocytes, CYP2C11 mRNA expression and 24- and 25-hydroxylation were significantly reduced after culture for 24 h compared with uncultured cells. Expression of CYP2J3 and CYP2R1 either increased or did not change. It is concluded that CYP2C11 is a male-specific hepatic microsomal vitamin D 25-hydroxylase that hydroxylates vitamin D2, vitamin D3, 1alphaOHD2, and 1alphaOHD3. CYP2C11 is also a vitamin D 24-hydroxylase.
开展了多项研究,以进一步表征在杆状病毒感染的昆虫细胞中表达的雄性特异性肝重组微粒体维生素D 25-羟化酶CYP2C11,并确定它是否也是一种维生素D 24-羟化酶。将25-羟化酶和24-羟化酶活性与在杆状病毒感染的昆虫细胞中表达的其他10种重组肝微粒体细胞色素P-450酶的活性进行了比较。它们每种都能将维生素D2、维生素D3、1α-羟基维生素D2(1αOHD2)和1α-羟基维生素D3(1αOHD3)进行25-羟化。CYP2C11对这些底物的活性最强,但维生素D3除外,其活性与其他四种酶相同。CYP2C11进行25-羟化的活性由高到低依次为1αOHD3 > 1αOHD2 > 维生素D2 > 维生素D3。每种重组细胞色素P-450酶都能将1αOHD2进行24-羟化。CYP2C11的活性最强。1αOHD3的24-羟化活性非常低,维生素D3则没有24-羟化活性。只有CYP2C11能将维生素D2进行24-羟化。通过高效液相色谱法、气相色谱保留时间和特征性质谱裂解模式,确认了包括24-羟基维生素D2、1,24(S)-二羟基维生素D2和1,24-二羟基维生素D3在内的维生素D代谢产物的结构。在雄性大鼠中,垂体切除显著降低了体重、肝脏重量、肝CYP2C11 mRNA表达以及1αOHD2的24-羟化和25-羟化。CYP2J3和CYP2R1 mRNA的表达没有变化。在雄性大鼠肝细胞中,与未培养的细胞相比,培养24小时后CYP2C11 mRNA表达以及24-羟化和25-羟化显著降低。CYP2J3和CYP2R1的表达要么增加,要么没有变化。结论是,CYP2C11是一种雄性特异性肝微粒体维生素D 25-羟化酶,可将维生素D2、维生素D3、1αOHD2和1αOHD3羟化。CYP2C11也是一种维生素D 24-羟化酶。