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人类 DHRS2 和 DHRS4 复制基因的分子和功能进化。

Molecular and functional evolution of human DHRS2 and DHRS4 duplicated genes.

机构信息

Department of Experimental Pathology and Medical Biotechnology, University of Pisa, Pisa, Italy.

出版信息

Gene. 2012 Dec 15;511(2):461-9. doi: 10.1016/j.gene.2012.09.013. Epub 2012 Oct 2.

Abstract

Human DHRS2 and DHRS4 genes code for similar NADP-dependent short-chain carbonyl-reductase enzymes having different substrate specificity. Human DHRS2 and DHRS4 enzymes share several common sequence motives including residues responsible for coenzyme binding as well as for the intimate catalytic oxido-reductase mechanism, while their substrate-binding sequences have very low similarity. We found that DHRS2 and DHRS4 genes are syntenic outparalogues originated from a duplication of the DHRS4 gene that took place before the formation of the mammalian clade. DHRS2 gene evolved more rapidly and underwent positive selection on more sites than the DHRS4 gene. DHRS2 sites under positive selection were mainly located on the enzyme active site thus showing that substrate specificity drove the divergence from the DHRS4 enzyme. Rapid divergent evolution brought the human DHRS2 enzyme to have subcellular localization, synthesis regulation and specialized cellular functions very different from those of the human DHRS4 enzyme.

摘要

人类 DHRS2 和 DHRS4 基因编码相似的 NADP 依赖性短链羰基还原酶,具有不同的底物特异性。人类 DHRS2 和 DHRS4 酶具有几个共同的序列基序,包括负责辅酶结合的残基以及亲密的氧化还原酶催化机制,而它们的底物结合序列具有非常低的相似性。我们发现 DHRS2 和 DHRS4 基因是来自 DHRS4 基因复制的同线性外基因,这种复制发生在哺乳动物进化枝形成之前。DHRS2 基因的进化速度比 DHRS4 基因更快,并且在更多的位点上经历了正选择。DHRS2 基因的正选择位点主要位于酶的活性位点上,因此表明底物特异性导致了与 DHRS4 酶的分歧。快速的分歧进化使人类 DHRS2 酶具有与人类 DHRS4 酶非常不同的亚细胞定位、合成调节和专门的细胞功能。

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