Thompson Claudia E, Salzano Francisco M, de Souza Osmar Norberto, Freitas Loreta B
Departamento de Genética, Instituto de Biociências, Universidade Federal do Rio Grande do Sul, Caixa Postal 15053, 91501-970 Porto Alegre, RS, Brazil.
Gene. 2007 Jul 1;396(1):108-15. doi: 10.1016/j.gene.2007.02.016. Epub 2007 Mar 13.
The glycolytic proteins in plants are coded by small multigene families, which provide an interesting contrast to the high copy number of gene families studied to date. The alcohol dehydrogenase (Adh) genes encode glycolytic enzymes that have been characterized in some plant families. Although the amino acid sequences of zinc-containing long-chain ADHs are highly conserved, the metabolic function of this enzyme is variable. They also have different patterns of expression and are submitted to differences in nonsynonymous substitution rates between gene copies. It is possible that the Adh copies have been retained as a consequence of adaptative amino acid replacements which have conferred subtle changes in function. Phylogenetic analysis indicates that there have been a number of separate duplication events within angiosperms, and that genes labeled Adh1, Adh2 and Adh3 in different groups may not be homologous. Nonsynonymous/synonymous ratios yielded no signs of positive selection. However, the coefficients of functional divergence (theta) estimated between the Adh1 and Adh2 gene groups indicate statistically significant site-specific shift of evolutionary rates between them, as well as between those of different botanical families, suggesting that altered functional constraints may have taken place at some amino acid residues after their diversification. The theoretical three-dimensional structure of the alcohol dehydrogenase from Arabis blepharophylla was constructed and verified to be stereochemically valid.
植物中的糖酵解蛋白由小型多基因家族编码,这与迄今为止研究的高拷贝数基因家族形成了有趣的对比。乙醇脱氢酶(Adh)基因编码了一些植物家族中已被表征的糖酵解酶。尽管含锌长链ADH的氨基酸序列高度保守,但这种酶的代谢功能是可变的。它们还具有不同的表达模式,并且基因拷贝之间的非同义替换率存在差异。有可能Adh拷贝因适应性氨基酸替换而得以保留,这些替换在功能上产生了细微变化。系统发育分析表明,被子植物中发生了许多独立的复制事件,不同组中标记为Adh1、Adh2和Adh3的基因可能不是同源的。非同义/同义比率没有显示出正选择的迹象。然而,Adh1和Adh2基因组之间估计的功能分化系数(theta)表明,它们之间以及不同植物科之间的进化速率存在统计学上显著的位点特异性变化,这表明在它们分化后,某些氨基酸残基可能发生了功能限制的改变。构建了来自睫毛虎耳草的乙醇脱氢酶的理论三维结构,并验证其在立体化学上是有效的。