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体外RNA聚合酶II在核小体模板上的转录:延伸抑制与序列特异性暂停增强

Transcription on nucleosomal templates by RNA polymerase II in vitro: inhibition of elongation with enhancement of sequence-specific pausing.

作者信息

Izban M G, Luse D S

机构信息

Department of Molecular Genetics, Biochemistry, and Microbiology, University of Cincinnati College of Medicine, Ohio 45267-0524.

出版信息

Genes Dev. 1991 Apr;5(4):683-96. doi: 10.1101/gad.5.4.683.

Abstract

The process by which RNA polymerase II elongates RNA chains in vivo, where the template is at least partially in a nucleosomal configuration, remains poorly understood. To approach this question we have partially purified RNA polymerase II transcription complexes paused early in elongation. These complexes were then used as substrates for chromatin reconstitution. Elongation of the nascent RNA chains on these nucleosomal templates is severely inhibited relative to elongation on naked DNA templates. Elongation on the nucleosomal templates results in a reproducible template-specific pattern of transcripts generated by RNA polymerase pausing. The RNA polymerases are not terminated because the large majority will resume elongation upon the addition of Sarkosyl or 400 mM KCl. The effectiveness of RNA polymerase II pause/termination sites is enhanced by the presence of nucleosomes. For example, a pause site similar in sequence to the c-myc gene exon 1 terminator is used four to seven times more effectively in reconstituted templates. A comparison of elongation on templates bearing phased nucleosomes and on reconstituted templates that show no predominant phasing pattern indicates that the locations of pause sites are not related to the positions of the nucleosomes. Rather, the major determinant of RNA polymerase pausing on the nucleosomal templates appears to be the underlying DNA sequence.

摘要

在体内,当模板至少部分处于核小体构型时,RNA聚合酶II延伸RNA链的过程仍知之甚少。为了解决这个问题,我们部分纯化了在延伸早期暂停的RNA聚合酶II转录复合物。然后将这些复合物用作染色质重构的底物。相对于在裸露DNA模板上的延伸,这些核小体模板上新生RNA链的延伸受到严重抑制。在核小体模板上的延伸导致RNA聚合酶暂停产生的转录本具有可重复的模板特异性模式。RNA聚合酶不会终止,因为绝大多数在添加十二烷基肌氨酸钠或400 mM氯化钾后会恢复延伸。核小体的存在增强了RNA聚合酶II暂停/终止位点的有效性。例如,与c-myc基因外显子1终止子序列相似的暂停位点在重构模板中的使用效率提高了4至7倍。对带有相位核小体的模板和没有主要相位模式的重构模板上的延伸进行比较表明,暂停位点的位置与核小体的位置无关。相反,RNA聚合酶在核小体模板上暂停的主要决定因素似乎是潜在的DNA序列。

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