Mol Biol Evol. 2010 Jul;27(7):1461-6. doi: 10.1093/molbev/msq041. Epub 2010 Feb 5.
Although divergence in expression is thought to be a hallmark of functional dispersal between paralogs postduplication, there is currently a limited understanding of the mechanisms underlying the necessary transcriptional alterations as recent studies have suggested that only a very small proportion of expression variation could be explained by transcriptional variation between paralogs. To further this understanding, we examined comprehensively curated regulatory interactions and genomewide nucleosome occupancy in budding yeast to specifically determine the contribution of cis-elements to expression divergence between extant duplicates. We found that divergence in activation by transcription factors plays a more important role in expression divergence of paralogs than previously appreciated; further, analysis of promoter chromatin structure demonstrated that differential nucleosome organization is coupled with divergent expression of paralogs. By incorporating information of cis-elements encoding transcriptional regulation and chromatin structure, we improved the fraction of expression variation that was previously shown to be explained based on known cis-transcriptional effects by approximately 3-fold. Taken together, our analysis highlights the importance of chromatin divergence involved in expression evolution between paralogs.
虽然表达分歧被认为是复制后功能分散的直系同源物的标志,但目前对于转录变化的必要机制还知之甚少,因为最近的研究表明,直系同源物之间的转录变化只能解释很小一部分的表达变异。为了进一步了解这一点,我们全面检查了芽殖酵母中经过精心整理的调控相互作用和全基因组核小体占有率,以专门确定顺式元件对现存直系同源物之间表达分歧的贡献。我们发现,转录因子的激活分歧在直系同源物表达分歧中的作用比以前认识到的更为重要;此外,启动子染色质结构的分析表明,不同的核小体组织与直系同源物的差异表达相关联。通过整合编码转录调控和染色质结构的顺式元件信息,我们将以前基于已知顺式-转录效应来解释的表达变异部分提高了约 3 倍。总的来说,我们的分析强调了染色质分歧在直系同源物之间的表达进化中的重要性。