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RNA polymerase III promoter and terminator elements affect Alu RNA expression

机译:RNA聚合酶III启动子和终止子元件影响Alu RNA表达

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Promoter elements derived from the 7SL RNA gene stimulate RNA polymerase III (Pol III) directed Alu transcription In vitro. These elements also stimulate expression of Alus transfected into 293 cells, but transcripts from these same constructs are undetect-able in HeLa cells. A terminator resembling the terminator for the 7SL RNA gene has no effect on In vitro Alu template activity, but increases expression In vivo In a position independent manner. Alu transcripts generated from templates with and without this terminator have identical half-lives, indicating that this terminator stimulates expression by increasing template activity. Together, these results show that Alu expression may be regulated at multiple levels and can respond to cls-acting elements. This new found ability to express Alu transcripts by transient transfectlon provides an opportunity to monitor their post-trans-criptional fate. Primary Alu transcripts are not extensively adenylated or deadenylated following transcription, but are short-lived compared to 118 nt scAlu RNA. In addition to Alu RNA, transfected templates encode scAlu RNA, but very high levels of Alu RNA expression does not increase the abundance of sc Alu RNA. ScAlu RNA is not merely a transient RNA degradation product, but is instead tightly regulated by factors other than the abundance of primary transcripts.
机译:源自7SL RNA基因的启动子元件在体外刺激RNA聚合酶III(Pol III)指导的Alu转录。这些元件也刺激转染到293细胞中的Alus的表达,但是在HeLa细胞中无法检测到来自这些相同构建体的转录本。与7SL RNA基因终止子相似的终止子对体外Alu模板活性没有影响,但在体内以位置无关的方式增加表达。由具有和不具有该终止子的模板产生的Alu转录物具有相同的半衰期,表明该终止子通过增加模板活性来刺激表达。总之,这些结果表明,Alu表达可能在多个水平上受到调节,并且可以响应cls作用元件。这种新发现的通过瞬时转染表达Alu转录本的能力为监视其转录后的命运提供了机会。初级Alu转录物在转录后并未被广泛的腺苷酸化或去甲烯基化,但与118 nt scAlu RNA相比,寿命较短。除Alu RNA外,转染的模板还编码scAlu RNA,但很高水平的Alu RNA表达不会增加sc Alu RNA的丰度。 ScAlu RNA不仅是瞬时的RNA降解产物,而且还受大量主要转录本以外的因素的严格调控。

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