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Template topology and transcription: chromatin templates relaxed by localized linearization are transcriptionally active in yeast.

机译:模板拓扑结构和转录:通过局部线性化松弛的染色质模板在酵母中具有转录活性。

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摘要

To address the role of transient torsional stress in transcription, we have utilized the regulated expression of HO endonuclease in yeast to create double-strand breaks in DNA templates in vivo at preselected sites. Linearization of circular minichromosomes, either 2 kb upstream or immediately downstream of a lacZ reporter gene controlled by the yeast metallothionein gene (CUP1) promoter, did not alter the copper induction profile of lacZ RNA transcripts compared to that of nonlinearized controls. Constructs site-specifically integrated into yeast chromosome II gave similar results. In vivo cross-linking with psoralen as a probe for negative DNA supercoiling demonstrated that template linearization efficiently dissipated DNA supercoiling induced by transcription. Therefore, the efficient transcription of linearized, relaxed templates found here demonstrates that transient torsional tension is not required for transcription of chromatin templates in yeast.
机译:为了解决瞬时扭转应力在转录中的作用,我们利用了酵母中HO内切核酸酶的调节表达来在体内DNA模板的预选位点处产生双链断裂。与非线性对照相比,由酵母金属硫蛋白基因(CUP1)启动子控制的lacZ报告基因上游2 kb或紧邻下游的环状微型染色体的线性化,不会改变lacZ RNA转录本的铜诱导特性。定点整合到酵母染色体II中的构建体给出了相似的结果。体内补骨脂素作为负DNA超螺旋探针的交联表明模板线性化有效地消散了转录诱导的DNA超螺旋。因此,此处发现的线性化,松弛模板的有效转录表明,酵母中染色质模板的转录不需要瞬时扭转张力。

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