Biodiversity Research Center, Academia Sinica, Taipei 115, Taiwan.
Bioinformatics Program, Taiwan International Graduate Program, Academia Sinica, Taipei 115, Taiwan; Institute of Information Science, Academia Sinica, Taipei 115, Taiwan.
Genomics. 2013 Nov-Dec;102(5-6):484-90. doi: 10.1016/j.ygeno.2013.10.008. Epub 2013 Nov 5.
Antisense RNAs (asRNAs) are known to regulate gene expression. However, a genome-wide mechanism of asRNA regulation is unclear, and there is no good explanation why partial asRNAs are not functional. To explore its regulatory role, we investigated asRNAs using an evolutionary approach, as genome-wide experimental data are limited. We found that the percentage of genes coupling with asRNAs in Saccharomyces cerevisiae is negatively associated with regulatory complexity and evolutionary age. Nevertheless, asRNAs evolve more slowly when their sense genes are under more complex regulation. Older genes coupling with asRNAs are more likely to demonstrate inverse expression, reflecting the role of these asRNAs as repressors. Our analyses provide novel evidence, suggesting a minor contribution of asRNAs in developing regulatory complexity. Although our results support the leaky hypothesis for asRNA transcription, our evidence also suggests that partial asRNAs may have evolved as repressors. Our study deepens the understanding of asRNA regulatory evolution.
反义 RNA(asRNA)已知可调节基因表达。然而,asRNA 调节的全基因组机制尚不清楚,也没有很好的解释为什么部分 asRNA 没有功能。为了探索其调节作用,我们采用进化方法研究 asRNA,因为全基因组的实验数据有限。我们发现,酿酒酵母中与 asRNA 偶联的基因比例与调节复杂性和进化年龄呈负相关。然而,当它们的有义基因受到更复杂的调节时,asRNA 的进化速度更慢。与 asRNA 偶联的较老基因更有可能表现出相反的表达,反映了这些 asRNA 作为抑制剂的作用。我们的分析提供了新的证据,表明 asRNA 在形成调节复杂性方面的作用较小。尽管我们的结果支持 asRNA 转录的渗漏假说,但我们的证据也表明部分 asRNA 可能已经进化为抑制剂。我们的研究深化了对 asRNA 调节进化的理解。