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酵母静止期一种普遍的拓扑异构酶I依赖性转录抑制作用。

A general topoisomerase I-dependent transcriptional repression in the stationary phase in yeast.

作者信息

Choder M

机构信息

Department of Biochemistry and Molecular Biology, Harvard University, Cambridge, Massachusetts 02138.

出版信息

Genes Dev. 1991 Dec;5(12A):2315-26. doi: 10.1101/gad.5.12a.2315.

Abstract

This paper shows that in the yeast Saccharomyces cerevisiae the levels of most mRNAs decrease, in a temporally orchestrated manner, as cells approach and enter the stationary phase. The decreased level of mRNAs is primarily due to transcriptional repression because the overall rate of in vivo transcription by RNA polymerase II is similarly reduced in the stationary phase. The reduction in mRNA levels and the general transcriptional repression are both dependent on topoisomerase I (encoded by TOP1). Specifically, these two processes are much slower in top1 mutants, as their mRNA levels and transcriptional rate remain unchanged for a longer period of time in the stationary phase before they start to decrease. In contrast, the mRNA levels in the stationary phase are not affected by perturbation of topoisomerase II activity. TOP1-dependent repression operates even on HSP26 and SSA3, which have been shown previously to be transcriptionally induced in early stationary phase. Thus, their mRNA levels are high upon the entry of the cells into the stationary phase but gradually decrease, by a TOP1-dependent mechanism, later in the stationary phase. A minor population of mRNAs is not subjected to the TOP1-dependent regulation, as their levels do not change in stationary phase. The possible role of topoisomerase I in the general transcriptional repression is discussed.

摘要

本文表明,在酿酒酵母中,随着细胞接近并进入稳定期,大多数mRNA的水平会以时间协调的方式下降。mRNA水平的降低主要是由于转录抑制,因为RNA聚合酶II在体内的总体转录速率在稳定期也同样降低。mRNA水平的降低和总体转录抑制都依赖于拓扑异构酶I(由TOP1编码)。具体而言,这两个过程在top1突变体中要慢得多,因为它们的mRNA水平和转录速率在稳定期开始下降之前的较长时间内保持不变。相反,稳定期的mRNA水平不受拓扑异构酶II活性扰动的影响。TOP1依赖性抑制甚至作用于HSP26和SSA3,这两种基因先前已被证明在稳定早期会被转录诱导。因此,它们的mRNA水平在细胞进入稳定期时很高,但在稳定期后期会通过TOP1依赖性机制逐渐降低。一小部分mRNA不受TOP1依赖性调控,因为它们在稳定期的水平没有变化。本文还讨论了拓扑异构酶I在总体转录抑制中的可能作用。

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