Tremblay Y, Bélanger A, Fleury A, Beaudoin C, Provost P, Martineau I
Laboratory of Molecular Endocrinology, CHUL Research Center, Québec, Canada.
Endocr Res. 1995 Feb-May;21(1-2):495-507. doi: 10.3109/07435809509030467.
Cytochrome P450c17 is a single enzyme that catalyzes two successive reactions within the delta 5 and delta 4 pathways. The proteins expressed with human, bovine, and rat cDNAs convert both pregnenolone and progesterone into delta 5-delta 4-C19 steroids, although the rat cDNA prefers the delta 4 pathway. Our results showed that the guinea pig adrenal possesses the enzymatic machinery to produce C19 steroids and suggest that the lyase activity plays a major role in regulating these syntheses. To obtain more information on the structure-function relationship we isolated a full-length cDNA clone encoding guinea pig P450c17. Northern blots of total RNA extracted from the testis, ovary, and adrenals of the guinea pig show that the P450c17 cDNA hybridized with a predicted 1.8-kb mRNA and with two other mRNAs of 3 and 4 kb. No signal other than the 1.8-kb mRNA was observed in the human adrenocortical NCI-H295 cells. Activation of the cAMP-dependent protein kinase A pathway increased the levels of the three mRNAs. Transfection of vectors expressing guinea pig P450c17 cDNA into nonsteroidogenic cells confers 17 alpha-hydroxylase and 17,20-lyase activities, showing that a single protein in the guinea pig supports both activities. However, the analysis of the enzymatic properties showed that the guinea pig P450c17 recombinant, in contrast to the human, supports hydroxylase and lyase activities only with delta 4 substrates. These results were further confirmed with isolated guinea pig adrenocortical cells. Our data demonstrate, first, that guinea pig P450c17 cDNA hybridizes with three different transcripts and second, that the expressed protein has characteristics associated exclusively with the guinea pig enzyme.
细胞色素P450c17是一种单一酶,可催化δ5和δ4途径中的两个连续反应。用人、牛和大鼠的cDNA表达的蛋白质可将孕烯醇酮和孕酮都转化为δ5-δ4-C19类固醇,尽管大鼠的cDNA更倾向于δ4途径。我们的结果表明,豚鼠肾上腺具有产生C19类固醇的酶机制,并表明裂解酶活性在调节这些合成中起主要作用。为了获得更多关于结构-功能关系的信息,我们分离了一个编码豚鼠P450c17的全长cDNA克隆。从豚鼠的睾丸、卵巢和肾上腺提取的总RNA的Northern印迹显示,P450c17 cDNA与预测的1.8 kb mRNA以及另外两个3 kb和4 kb的mRNA杂交。在人肾上腺皮质NCI-H295细胞中未观察到除1.8 kb mRNA以外的信号。cAMP依赖性蛋白激酶A途径的激活增加了这三种mRNA的水平。将表达豚鼠P450c17 cDNA的载体转染到非类固醇生成细胞中可赋予17α-羟化酶和17,20-裂解酶活性,表明豚鼠中的单一蛋白质支持这两种活性。然而,酶学性质分析表明,与人类相比,豚鼠P450c17重组体仅对δ4底物支持羟化酶和裂解酶活性。这些结果在分离的豚鼠肾上腺皮质细胞中得到了进一步证实。我们的数据首先证明,豚鼠P450c17 cDNA与三种不同的转录本杂交,其次证明所表达的蛋白质具有仅与豚鼠酶相关的特征。