Wang Qing, Nowak Chance M, Korde Asawari, Oh Dong-Ha, Dassanayake Maheshi, Donze David
BMC Biol. 2014 Oct 28;12:89. doi: 10.1186/s12915-014-0089-x.
Assembled RNA polymerase III (Pol III) complexes exert local effects on chromatin processes, including influencing transcription of neighboring RNA polymerase II (Pol II) transcribed genes. These properties have been designated as 'extra-transcriptional' effects of the Pol III complex. Previous coding sequence microarray studies using Pol III factor mutants to determine global effects of Pol III complex assembly on Pol II promoter activity revealed only modest effects that did not correlate with the proximity of Pol III complex binding sites.
Given our recent results demonstrating that tDNAs block progression of intergenic Pol II transcription, we hypothesized that extra-transcriptional effects within intergenic regions were not identified in the microarray study. To reconsider global impacts of Pol III complex binding, we used RNA sequencing to compare transcriptomes of wild type versus Pol III transcription factor TFIIIC depleted mutants. The results reveal altered intergenic Pol II transcription near TFIIIC binding sites in the mutant strains, where we observe readthrough of upstream transcripts that normally terminate near these sites, 5'- and 3'-extended transcripts, and de-repression of adjacent genes and intergenic regions.
The results suggest that effects of assembled Pol III complexes on transcription of neighboring Pol II promoters are of greater magnitude than previously appreciated, that such effects influence expression of adjacent genes at transcriptional start site and translational levels, and may explain a function of the conserved ETC sites in yeast. The results may also be relevant to synthetic biology efforts to design a minimal yeast genome.
组装好的RNA聚合酶III(Pol III)复合物对染色质过程产生局部影响,包括影响相邻的RNA聚合酶II(Pol II)转录基因的转录。这些特性被指定为Pol III复合物的“额外转录”效应。先前使用Pol III因子突变体进行的编码序列微阵列研究,以确定Pol III复合物组装对Pol II启动子活性的全局影响,结果仅显示出适度的影响,且与Pol III复合物结合位点的接近程度无关。
鉴于我们最近的结果表明tDNA会阻断基因间Pol II转录的进程,我们推测在微阵列研究中未发现基因间区域的额外转录效应。为了重新考虑Pol III复合物结合的全局影响,我们使用RNA测序来比较野生型与Pol III转录因子TFIIIC缺失突变体的转录组。结果显示,在突变菌株中,TFIIIC结合位点附近的基因间Pol II转录发生改变,我们观察到上游转录本的通读,这些转录本通常在这些位点附近终止,还有5'和3'延伸的转录本,以及相邻基因和基因间区域的去抑制。
结果表明,组装好的Pol III复合物对相邻Pol II启动子转录的影响比之前认识到的更大,这种影响在转录起始位点和翻译水平上影响相邻基因的表达,并且可能解释了酵母中保守的ETC位点的功能。这些结果也可能与设计最小酵母基因组的合成生物学研究相关。