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从特定DNA模板体外组装的合成细胞核中的RNA聚合酶III转录。

RNA polymerase III transcription in synthetic nuclei assembled in vitro from defined DNA templates.

作者信息

Ullman K S, Forbes D J

机构信息

Department of Biology, University of California at San Diego, La Jolla 92093-0347, USA.

出版信息

Mol Cell Biol. 1995 Sep;15(9):4873-83. doi: 10.1128/MCB.15.9.4873.

Abstract

Although much is known of the basic control of transcription, little is understood of the way in which the structural organization of the nucleus affects transcription. Synthetic nuclei, assembled de novo in extracts of Xenopus eggs, would be predicted to have a large potential for approaching the role of nuclear structure in RNA biogenesis. Synthetic nuclei provide a system in which the genetic content of the nuclei, as well as the structural and enzymatic proteins within the nuclei, can be manipulated. In this study, we have begun to examine transcription in such nuclei by using the most simple of templates, RNA polymerase III (pol III)-transcribed genes. DNA encoding tRNA or 5S genes was added to an assembly extract, and nuclei were formed entirely from the pol III templates. Conditions which allowed nuclear assembly and pol III transcription to take place efficiently and simultaneously in the assembly extract were found. To examine whether pol III transcription could initiate within synthetic nuclei, or instead was inhibited in nuclei and initiated only on rare unincorporated templates, we identified transcriptional inhibitors that were excluded from nuclei. We found that these inhibitors, heparin and dextran sulfate, blocked pol III transcription in the absence of assembly but did not do so following nuclear assembly. At the concentrations used, the inhibitors had no deleterious effect on nuclear structure itself or on nuclear import. We conclude that pol III transcription is active in synthetic nuclei, and this conclusion is further strengthened by the finding that pol III transcripts could be coisolated with synthetic nuclei. The rapid and direct transcriptional analysis possible with pol III templates, coupled with the simple experimental criteria developed in this study for distinguishing between nuclear and non-nuclear transcription, should now allow a molecular analysis of the effect of nuclear structure on transcriptional and posttranscriptional control.

摘要

尽管人们对转录的基本调控机制已了解颇多,但对于细胞核的结构组织如何影响转录却知之甚少。在非洲爪蟾卵提取物中从头组装的合成细胞核,预计在探讨核结构在RNA生物合成中的作用方面具有很大潜力。合成细胞核提供了一个系统,其中细胞核的遗传内容以及细胞核内的结构蛋白和酶蛋白都可以被操控。在本研究中,我们开始通过使用最简单的模板——RNA聚合酶III(pol III)转录的基因,来研究此类细胞核中的转录情况。将编码tRNA或5S基因的DNA添加到组装提取物中,细胞核完全由pol III模板形成。我们发现了能够在组装提取物中高效且同时发生核组装和pol III转录的条件。为了研究pol III转录是能在合成细胞核内起始,还是在细胞核中受到抑制而仅在罕见的未整合模板上起始,我们鉴定了被细胞核排除的转录抑制剂。我们发现,这些抑制剂——肝素和硫酸葡聚糖,在没有组装的情况下会阻断pol III转录,但在核组装后则不会。在所使用的浓度下,这些抑制剂对核结构本身或核输入没有有害影响。我们得出结论,pol III转录在合成细胞核中是活跃的,并且pol III转录本可以与合成细胞核共分离这一发现进一步强化了这一结论。利用pol III模板进行快速直接的转录分析,再加上本研究中制定的用于区分核转录和非核转录的简单实验标准,现在应该能够对核结构对转录和转录后调控的影响进行分子分析。

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