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真核生物卡氏棘阿米巴中核糖体RNA转录的起始和调控机制。

Initiation and regulation mechanisms of ribosomal RNA transcription in the eukaryote Acanthamoeba castellanii.

作者信息

Paule M R, Bateman E, Hoffman L, Iida C, Imboden M, Kubaska W, Kownin P, Li H, Lofquist A, Risi P

机构信息

Department of Biochemistry, Colorado State University, Fort Collins 80523.

出版信息

Mol Cell Biochem. 1991;104(1-2):119-26. doi: 10.1007/BF00229811.

Abstract

Acanthamoeba rRNA transcription involves the binding of a transcription initiation factor (TIF) to the core promoter of rDNA to form the preinitiation complex. This complex is formed in the absence of RNA polymerase I, and persists for multiple rounds of initiation. Polymerase I next binds to form the initiation complex. This binding is DNA sequence-independent, and is directed by protein-protein contacts with TIF. DNA melting occurs in a separate step. In contrast to most prokaryotic transcription, melting occurs only following nucleotide addition and beta-gamma hydrolysis of ATP is not required as for polymerase II. Growth-dependent regulation of rRNA transcription is accomplished by modification of RNA polymerase I. The inactive form of polymerase (PolE) is unable to bind to the promoter and has altered heat stability. PolE is still active in elongation; thus, the modification affects the polymerase site involved in TIF contact. Modification of a polymerases I and III common subunit has been detected leading to the suggestion that transcription of stable RNAs of the ribosome might be co-regulated by this mechanism.

摘要

棘阿米巴原虫的核糖体RNA转录涉及转录起始因子(TIF)与核糖体DNA核心启动子结合,形成转录前起始复合物。该复合物在没有RNA聚合酶I的情况下形成,并在多轮起始过程中持续存在。接下来,聚合酶I结合形成起始复合物。这种结合不依赖于DNA序列,而是由与TIF的蛋白质-蛋白质相互作用引导。DNA解链发生在一个单独的步骤中。与大多数原核生物转录不同,解链仅在核苷酸添加后发生,并且不像聚合酶II那样需要ATP的β-γ水解。核糖体RNA转录的生长依赖性调节是通过RNA聚合酶I的修饰来实现的。聚合酶(PolE)的无活性形式无法与启动子结合,并且热稳定性发生了改变。PolE在延伸过程中仍然具有活性;因此,这种修饰影响了参与TIF接触的聚合酶位点。已经检测到聚合酶I和III的一个共同亚基发生了修饰,这表明核糖体稳定RNA的转录可能通过这种机制共同调节。

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