Maraia R J, Kenan D J, Keene J D
Laboratory of Molecular Growth Regulation, National Institute of Child Health and Human Development, Bethesda, Maryland 20892.
Mol Cell Biol. 1994 Mar;14(3):2147-58. doi: 10.1128/mcb.14.3.2147-2158.1994.
Ample evidence indicates that Alu family interspersed elements retrotranspose via primary transcripts synthesized by RNA polymerase III (pol III) and that this transposition sometimes results in genetic disorders in humans. However, Alu primary transcripts can be processed posttranscriptionally, diverting them away from the transposition pathway. The pol III termination signal of a well-characterized murine B1 (Alu-equivalent) element inhibits RNA 3' processing, thereby stabilizing the putative transposition intermediary. We used an immobilized template-based assay to examine transcription termination by VA1, 7SL, and Alu class III templates and the role of transcript release in the pol III terminator-dependent inhibition of processing of B1-Alu transcripts. We found that the RNA-binding protein La confers this terminator-dependent 3' processing inhibition on transcripts released from the B1-Alu template. Using pure recombinant La protein and affinity-purified transcription complexes, we also demonstrate that La facilitates multiple rounds of transcription reinitiation by pol III. These results illustrate an important role for La in RNA production by demonstrating its ability to clear the termination sites of class III templates, thereby promoting efficient use of transcription complexes by pol III. The role of La as a potential regulatory factor in transcript maturation and how this might apply to Alu interspersed elements is discussed.
大量证据表明,Alu家族散布元件通过RNA聚合酶III(pol III)合成的初级转录本进行逆转座,且这种转座有时会导致人类遗传疾病。然而,Alu初级转录本可在转录后进行加工,使其偏离转座途径。一个特征明确的小鼠B1(与Alu等效)元件的pol III终止信号会抑制RNA 3'加工,从而稳定假定的转座中间体。我们使用基于固定模板的分析方法,来检测VA1、7SL和Alu III类模板的转录终止情况,以及转录本释放对B1-Alu转录本加工过程中pol III终止子依赖性抑制的作用。我们发现,RNA结合蛋白La赋予从B1-Alu模板释放的转录本这种依赖于终止子的3'加工抑制作用。使用纯重组La蛋白和亲和纯化的转录复合物,我们还证明La促进pol III进行多轮转录重新起始。这些结果通过证明La能够清除III类模板的终止位点,从而促进pol III对转录复合物的有效利用,说明了La在RNA产生中的重要作用。文中还讨论了La作为转录本成熟过程中潜在调节因子的作用,以及这可能如何应用于Alu散布元件。