Department of Chemistry and Biochemistry, Laurentian University, Sudbury, ON, P3E 2C6, Canada.
J Mol Evol. 2012 Dec;75(5-6):198-213. doi: 10.1007/s00239-012-9532-1. Epub 2012 Nov 25.
Isozymes, homologous enzymes coded by separate loci within a genome, present interesting systems for examining molecular and functional divergence through natural selection. Isozyme pairs for a number of metabolic enzymes, including Triosephosphate isomerase (Tpi), Malate dehydrogenase (Mdh), Phosphoglucose isomerase (Pgi), and Guanylate kinase (Guk), appear to all result from a single, large duplication event early in teleost evolution. These small gene families include two forms, a generally expressed form with no apparent charge and a neurally expressed form with a pronounced negative charge although the canalization of expression of the second form varies across families. Using ancestral sequence reconstructions and standard comparisons of rates of nonsynonymous and synonymous change, combined with the examination of the specific amino acid changes observed and predicted we examined the evolution of the Tpi and Guk families using all available vertebrate sequences and all four families using a smaller, common, dataset. We find that post-duplication, the neural Tpi and Guk isozymes evolved through similar periods of positive selection as evidenced by elevated rates of nonsynonymous change and accumulation of negative amino acids. Over the same evolutionary period our analysis suggests that Mdh and Pgi isozymes appear to have evolved under a less divergent pattern of selection. These distinct results likely reflect functional differences between the isozymes, possibly a result of differences in expression patterns.
同工酶是基因组内不同基因座编码的同源酶,为通过自然选择研究分子和功能的分歧提供了有趣的系统。包括磷酸丙糖异构酶(Tpi)、苹果酸脱氢酶(Mdh)、磷酸葡萄糖异构酶(Pgi)和鸟苷酸激酶(Guk)在内的许多代谢酶的同工酶对似乎都来自于硬骨鱼进化早期的一次单一的、大规模的复制事件。这些小基因家族包括两种形式,一种是普遍表达的形式,没有明显的电荷,另一种是神经表达的形式,带有明显的负电荷,尽管第二种形式的表达模式在不同的家族中有所不同。我们使用祖先序列重建和非同义与同义替换率的标准比较,结合观察到的和预测的特定氨基酸变化的检查,使用所有可用的脊椎动物序列和一个较小的共同数据集来研究 Tpi 和 Guk 家族的进化。我们发现,复制后,神经 Tpi 和 Guk 同工酶通过类似的正选择时期进化,证据是非同义替换率升高和负氨基酸积累。在同一进化时期,我们的分析表明,Mdh 和 Pgi 同工酶似乎进化出了一种选择模式不同的情况。这些截然不同的结果可能反映了同工酶之间的功能差异,可能是表达模式的差异所致。