Electronic Department, Sun Yat-Sen University, Guangzhou, PR China.
BMC Genomics. 2009 Dec 2;10:573. doi: 10.1186/1471-2164-10-573.
Most genes are not affected when any transcription factor (TF) is knocked out, indicating that they have robust transcriptional regulatory program. Yet the mechanism underlying robust transcriptional regulatory program is less clear.
Here, we studied the cause and effect of robust transcriptional regulatory program. We found that cooperative TFs in the robust transcriptional regulatory program regulate their common target genes in an activity-redundant fashion, and they are able to compensate for each other's loss. As a result, their target genes are insensitive to their single perturbation. We next revealed that the degree of robustness of transcriptional regulatory program influences gene expression variability. Genes with fragile (unrobust) transcriptional regulatory program under normal growth condition could be readily reprogrammed to significantly modulate gene expression upon changing conditions. They also have high evolutionary rates of gene expression. We further showed that the fragile transcriptional regulatory program is a major source of expression variability.
We showed that activity-redundant TFs guarantee the robustness of transcriptional regulatory programs, and the fragility of transcriptional regulatory program plays a major role in gene expression variability. These findings reveal the mechanisms underlying robust transcription and expression variability.
当任何转录因子(TF)被敲除时,大多数基因都不会受到影响,这表明它们具有稳健的转录调控程序。然而,稳健的转录调控程序背后的机制尚不清楚。
在这里,我们研究了稳健的转录调控程序的原因和结果。我们发现,稳健的转录调控程序中的协同 TF 以活性冗余的方式调节其共同的靶基因,并且它们能够相互补偿。因此,它们的靶基因对单个扰动不敏感。接下来,我们揭示了转录调控程序的稳健程度会影响基因表达的可变性。在正常生长条件下,具有脆弱(不稳健)转录调控程序的基因在改变条件时很容易被重新编程,从而显著调节基因表达。它们的基因表达也具有较高的进化速率。我们进一步表明,脆弱的转录调控程序是表达可变性的主要来源。
我们表明,活性冗余的 TF 保证了转录调控程序的稳健性,而转录调控程序的脆弱性在基因表达可变性中起着重要作用。这些发现揭示了稳健转录和表达可变性的机制。