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在生长受限细胞的提取物中,聚合酶III转录因子B的活性降低。

Polymerase III transcription factor B activity is reduced in extracts of growth-restricted cells.

作者信息

Tower J, Sollner-Webb B

机构信息

Department of Biological Chemistry, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205.

出版信息

Mol Cell Biol. 1988 Feb;8(2):1001-5. doi: 10.1128/mcb.8.2.1001-1005.1988.

Abstract

Extracts of cells that are down-regulated for transcription by RNA polymerase I and RNA polymerase III exhibit a reduced in vitro transcriptional capacity. We have recently demonstrated that the down-regulation of polymerase I transcription in extracts of cycloheximide-treated and stationary-phase cells results from a lack of an activated subform of RNA polymerase I which is essential for rDNA transcription. To examine whether polymerase III transcriptional down-regulation occurs by a similar mechanism, the polymerase III transcription factors were isolated and added singly and in pairs to control cell extracts and to extracts of cells that had reduced polymerase III transcriptional activity due to cycloheximide treatment or growth into stationary phase. These down-regulations result from a specific reduction in TFIIIB; TFIIIC and polymerase III activities remain relatively constant. Thus, although transcription by both polymerase III and polymerase I is substantially decreased in extracts of growth-arrested cells, this regulation is brought about by reduction of different kinds of activities: a component of the polymerase III stable transcription complex in the former case and the activated subform of RNA polymerase I in the latter.

摘要

那些因RNA聚合酶I和RNA聚合酶III转录下调的细胞提取物表现出降低的体外转录能力。我们最近证明,在环己酰亚胺处理的细胞提取物和静止期细胞中,聚合酶I转录的下调是由于缺乏对rDNA转录至关重要的RNA聚合酶I的活化亚形式。为了研究聚合酶III转录下调是否通过类似机制发生,分离了聚合酶III转录因子,并单独或成对添加到对照细胞提取物以及由于环己酰亚胺处理或生长进入静止期而具有降低的聚合酶III转录活性的细胞提取物中。这些下调是由TFIIIB的特异性降低导致的;TFIIIC和聚合酶III活性保持相对恒定。因此,尽管在生长停滞细胞的提取物中,聚合酶III和聚合酶I的转录都大幅下降,但这种调节是由不同种类活性的降低引起的:在前一种情况下是聚合酶III稳定转录复合物的一个组分,在后一种情况下是RNA聚合酶I的活化亚形式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c812/363236/eff270482181/molcellb00062-0498-a.jpg

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