Centre for Advanced Research in Environmental Genomics, Department of Biology, University of Ottawa, 30 Marie Curie, Ottawa, Ont., Canada K1N 6N5.
Gen Comp Endocrinol. 2010 May 1;166(3):489-97. doi: 10.1016/j.ygcen.2009.08.004. Epub 2009 Aug 15.
Steroid-5alpha-reductases (SRD5alpha) and steroid-5beta-reductase (SRD5beta) represent a convergence in evolution: they share similar biological functions, but do not have a common ancestor. In vertebrates, SRD5alpha and SRD5beta are involved in C-19 and C-21 steroid biosynthesis, bile acid biosynthesis and erythropoiesis. We compare and contrast the history, evolution, tissue distribution, enzyme characteristics and biological functions of SRD5alpha and SRD5beta and suggest possible future directions for research efforts. Both, the unique and overlapping roles that SRD5alpha and SRD5beta play in steroid hormone metabolism, are indicated. We also present the phylogeny of the SRD5alpha. The main SRD5alpha subfamilies obtained include, not only the well-known SRD5alpha type 1, type 2 and type 3, but also the synaptic glycoprotein (GPSN2)/trans-2,3-enoly-CoA reductase group. Phylogenetic analysis indicated that a eukaryotic ancestor likely underwent duplication events to generate these three subfamilies (type 1/2, type 3 and GPSN2 ancestors); both SRD5alpha type 1/2 and GPSN2 subfamilies may have evolved by ancient duplication events at the early stage of vertebrate and chordate evolution.
甾体 5α-还原酶(SRD5α)和甾体 5β-还原酶(SRD5β)代表了进化上的趋同:它们具有相似的生物学功能,但没有共同的祖先。在脊椎动物中,SRD5α 和 SRD5β参与 C-19 和 C-21 甾体生物合成、胆汁酸生物合成和红细胞生成。我们比较和对比了 SRD5α 和 SRD5β的历史、进化、组织分布、酶特性和生物学功能,并提出了未来研究工作的可能方向。既表明了 SRD5α 和 SRD5β在甾体激素代谢中独特和重叠的作用。我们还展示了 SRD5α 的系统发育。获得的主要 SRD5α 亚科不仅包括众所周知的 SRD5α 类型 1、2 和 3,还包括突触糖蛋白(GPSN2)/反式-2,3-烯酰-CoA 还原酶组。系统发育分析表明,真核生物祖先可能经历了复制事件,产生了这三个亚科(类型 1/2、类型 3 和 GPSN2 祖先);SRD5α 类型 1/2 和 GPSN2 亚科可能是在脊椎动物和脊索动物进化的早期通过古老的复制事件进化而来的。