Zhou Lin-Yan, Wang De-Shou, Kobayashi Tohru, Yano Akihiro, Paul-Prasanth Bindhu, Suzuki Aya, Sakai Fumie, Nagahama Yoshitaka
Laboratory of Reproductive Biology, National Institute for Basic Biology, Graduate University for Advanced Studies, Okazaki 444-8585, Japan.
Endocrinology. 2007 Sep;148(9):4282-91. doi: 10.1210/en.2007-0487. Epub 2007 Jun 14.
Cytochrome P450c17 is the single enzyme that mediates the 17 alpha-hydroxylase and 17, 20 lyase activities during the biosynthesis of steroid hormones in the gonads and adrenal gland. However, the mechanism underlying its dual action continues to be a controversy in the field of steroidogenesis in fish. In an attempt to resolve this issue, we identified a novel type of P450c17 (P450c17-II) by an in silico analysis from the genomes of six fish species. We cloned P450c17-II from tilapia and medaka, and comparison with the conventional P450c17-I revealed that they differ in gene structure and enzymatic activity. Enzymatic assays by thin-layer chromatography revealed that P450c17-II possesses only the 17 alpha-hydroxylase activity without any 17, 20 lyase activity, unlike P450c17-I, which has both these activities. In testis, both P450c17-I and -II express in the interstitial cells. Remarkable differences, revealed by in situ hybridization, in the expression patterns of the P450c17-I and -II in the ovary and head kidney of tilapia during various stages of development strongly suggest that P450c17-I is responsible for the synthesis of estradiol-17beta in the ovary, whereas P450c17-II is required for the production of C21 steroids such as cortisol in the head kidney. More interestingly, a temporally controlled switching is observable in the expression of these two genes during the steroidogenic shift from estradiol-17beta to the C21 steroid, 17 alpha, 20 beta-dihydroxy-4-pregnen-3-one (maturation-inducing hormone of fish oocytes) in the fish ovary, revealing a role for P450c17-II in the production of hormones that induce oocyte maturation in fish.
细胞色素P450c17是一种单一的酶,在性腺和肾上腺中甾体激素的生物合成过程中,介导17α-羟化酶和17,20裂解酶的活性。然而,其双重作用的潜在机制在鱼类甾体生成领域仍然存在争议。为了解决这个问题,我们通过对六种鱼类基因组的计算机分析,鉴定出一种新型的P450c17(P450c17-II)。我们从罗非鱼和青鳉中克隆了P450c17-II,并与传统的P450c17-I进行比较,发现它们在基因结构和酶活性上存在差异。通过薄层色谱法进行的酶活性测定表明,与具有这两种活性的P450c17-I不同,P450c17-II仅具有17α-羟化酶活性,而没有任何17,20裂解酶活性。在睾丸中,P450c17-I和-II均在间质细胞中表达。原位杂交显示,在罗非鱼发育的各个阶段,卵巢和头肾中P450c17-I和-II的表达模式存在显著差异,这强烈表明P450c17-I负责卵巢中雌二醇-17β的合成,而P450c17-II是头肾中皮质醇等C21甾体生成所必需的。更有趣的是,在鱼类卵巢中,从雌二醇-17β向C21甾体17α,20β-二羟基-4-孕烯-3-酮(鱼类卵母细胞成熟诱导激素)的甾体生成转变过程中,可以观察到这两个基因表达的时间控制切换,这揭示了P450c17-II在鱼类卵母细胞成熟诱导激素产生中的作用。