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一种新的酵母基因THO2参与RNA聚合酶II转录,并为转录延伸相关重组提供了新证据。

A novel yeast gene, THO2, is involved in RNA pol II transcription and provides new evidence for transcriptional elongation-associated recombination.

作者信息

Piruat J I, Aguilera A

机构信息

Departamento de Genética, Facultad de Biología, Universidad de Sevilla, E-41012 Sevilla, Spain.

出版信息

EMBO J. 1998 Aug 17;17(16):4859-72. doi: 10.1093/emboj/17.16.4859.

Abstract

We have identified two novel yeast genes, THO1 and THO2, that partially suppress the transcription defects of hpr1Delta mutants by overexpression. We show by in vivo transcriptional and recombinational analysis of tho2Delta cells that THO2 plays a role in RNA polymerase II (RNA pol II)-dependent transcription and is required for the stability of DNA repeats, as previously shown for HPR1. The tho2Delta mutation reduces the transcriptional efficiency of yeast DNA sequences down to 25% of the wild-type levels and abolishes transcription of the lacZ sequence. In addition, tho2Delta causes a strong increase in the frequency of recombination between direct repeats (>2000-fold above wild-type levels). Some DNA repeats cannot even be maintained in the cell. This hyper-recombination phenotype is dependent on transcription and is not observed in DNA repeats that are not transcribed. The higher the impairment of transcription caused by tho2Delta, the higher the frequency of recombination of a particular DNA region. The tho2Delta mutation also increases the frequency of plasmid loss. Our work not only identifies a novel yeast gene, THO2, with similar function to HPR1, but also provides new evidence for transcriptional blocks as a source of recombination. We propose that there is a set of proteins including Hpr1p and Tho2p, in the absence of which RNA pol II transcription is stalled or blocked, causing genetic instability.

摘要

我们鉴定出了两个新的酵母基因THO1和THO2,它们通过过表达部分抑制了hpr1Δ突变体的转录缺陷。我们通过对tho2Δ细胞进行体内转录和重组分析表明,THO2在RNA聚合酶II(RNA pol II)依赖性转录中发挥作用,并且如先前对HPR1的研究所示,它是DNA重复序列稳定性所必需的。tho2Δ突变将酵母DNA序列的转录效率降低至野生型水平的25%,并消除了lacZ序列的转录。此外,tho2Δ导致直接重复序列之间的重组频率大幅增加(比野生型水平高2000倍以上)。一些DNA重复序列甚至无法在细胞中维持。这种高重组表型依赖于转录,在未转录的DNA重复序列中未观察到。tho2Δ对转录造成的损伤越大,特定DNA区域的重组频率就越高。tho2Δ突变还增加了质粒丢失的频率。我们的工作不仅鉴定出了一个与HPR1功能相似的新酵母基因THO2,还为转录阻滞作为重组来源提供了新证据。我们提出存在一组包括Hpr1p和Tho2p在内的蛋白质,在缺乏这些蛋白质时,RNA pol II转录会停滞或受阻,从而导致遗传不稳定。

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