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RNA聚合酶修饰对真核生物核糖体RNA转录的调控

Regulation of eukaryotic ribosomal RNA transcription by RNA polymerase modification.

作者信息

Bateman E, Paule M R

出版信息

Cell. 1986 Nov 7;47(3):445-50. doi: 10.1016/0092-8674(86)90601-x.

Abstract

Forms of RNA polymerase I prepared from growing or encysted Acanthamoeba are equal in the ability to transcribe poly(dl:dC). Polymerase from cysts, whose rRNA genes are transcriptionally inactive, is unable to utilize the rDNA promoter in vitro, whereas the transcription initiation factor from cysts is fully able to bind the promoter and direct transcription. Footprinting shows that polymerase from cysts is functionally inactive because of its inability to bind to the promoter. The polymerase footprint moves downstream the appropriate number of base pairs upon various nucleotide additions, without affecting the factor footprint. These results support our hypothesis that rRNA synthesis in eukaryotes is regulated by polymerase I modification and not by alterations to additional DNA-binding proteins.

摘要

从生长阶段或包囊阶段的棘阿米巴中制备的RNA聚合酶I转录多聚(dI:dC)的能力相同。来自包囊的聚合酶,其rRNA基因转录无活性,在体外无法利用rDNA启动子,而来自包囊的转录起始因子完全能够结合启动子并指导转录。足迹分析表明,来自包囊的聚合酶由于无法结合启动子而功能失活。在添加各种核苷酸后,聚合酶足迹会向下游移动适当数量的碱基对,而不会影响因子足迹。这些结果支持了我们的假设,即真核生物中rRNA的合成是由聚合酶I修饰调控的,而不是由其他DNA结合蛋白的改变调控的。

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