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Topological constraints impair RNA polymerase II transcription and causes instability of plasmid-borne convergent genes

机译:拓扑限制会损害RNA聚合酶II的转录并导致质粒携带的收敛基因不稳定

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Despite the theoretical bases for the association of topoisomerases and supercoiling changes with transcription and replication, our knowledge of the impact of topological constraints on transcription and replication is incomplete. Although mutation of topoisomerases affects expression and stability of the rDNA region it is not clear whether the same is the case for RNAPII transcription and genome integrity in other regions. We developed new assays in which two convergent RNAPII-driven genes are transcribed simultaneously. Plasmid-based systems were constructed with and without a transcription terminator between the two convergent transcription units, so that the impact of transcription interference could also be evaluated. Using these assays we show that Topos I and II play roles in RNAPII transcription in vivo and reduce the stability of RNAPII-transcribed genes in Saccharomyces cerevisiae. Supercoiling accumulation in convergent transcription units impairs RNAPII transcription in top1 Delta strains, but Topo II is also required for efficient transcription independent of Topo I and of detectable supercoiling accumulation. Our work shows that topological constraints negatively affect RNAPII transcription and genetic integrity, and provides an assay to study gene regulation by transcription interference.
机译:尽管拓扑异构酶和超螺旋变化与转录和复制之间存在关联的理论基础,但我们对拓扑约束对转录和复制的影响的了解尚不完整。尽管拓扑异构酶的突变会影响rDNA区域的表达和稳定性,但尚不清楚其他区域的RNAPII转录和基因组完整性是否相同。我们开发了新的检测方法,其中两个聚合的RNAPII驱动基因同时被转录。构建了基于质粒的系统,在两个会聚的转录单位之间带有和不带有转录终止子,因此也可以评估转录干扰的影响。使用这些测定法,我们表明Topos I和II在体内RNAPII转录中发挥作用,并降低了酿酒酵母中RNAPII转录基因的稳定性。收敛转录单位中的超螺旋积累会破坏top1 Delta菌株中的RNAPII转录,但是Topo II对于独立于Topo I和可检测的超螺旋积累的有效转录也是必需的。我们的工作表明拓扑约束会对RNAPII转录和遗传完整性产生负面影响,并提供了一种通过转录干扰研究基因调控的方法。

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