5' exonuclease in HeLa extracts. Similar activities have been implicated in RNA turnover in'/> 3'-Terminal RNA structures and poly(U) tracts inhibit initiation by a 3'-->5' exonuclease in vitro.
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3'-Terminal RNA structures and poly(U) tracts inhibit initiation by a 3'-->5' exonuclease in vitro.

机译:3'末端RNA结构和多聚(U)束在体外抑制3'-> 5'核酸外切酶的起始。

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    摘要

    We have previously shown that the presence of a poly(A) tail blocks the activity of a highly efficient 3'-->5' exonuclease in HeLa extracts. Similar activities have been implicated in RNA turnover in vivo. It is not clear, however, what protects poly(A)-non-mRNAs from the action of this enzyme. A stem-loop structure located at the 3'-end of U11 RNA was required to protect this transcript from the exonuclease in vitro. Similar 3' stem-loop structures, or extensive base pairinginvolving the 3'-end, are present on all mature small stable RNAs. The placement of artificial stem-loop structures at the 3'-end also protected RNA substrates, suggesting that RNA structure alone is sufficient to block the initiation of the exonuclease. The placement of RNA structures at internal positions of substrate trans-cripts did not affect the activity of the exonuclease or lead to the accumulation of degradation intermediates. Pol III precursor transcripts contain short poly(U) tracts rather than structure at their 3'-ends. Terminal poly(U) tracts protected RNA substrates from the 3'-->5' exonuclease in a protein-dependent fashion. Although La protein is found associated with the terminal U tracts of pol III precursor transcripts both in vivo and in vitro, La protein was not required for poly(U) to protect RNA substrates from the 3'-->5' exonuclease. In summary, these data reveal a variety of ways RNAs have evolved to protect themselves from this exonuclease.
    机译:先前我们已经证明,poly(A)尾巴的存在会阻止HeLa提取物中高效3'-> 5'核酸外切酶的活性。在体内RNA转换中也涉及类似的活性。但是,尚不清楚什么能保护聚(A)-非mRNA免受这种酶的作用。需要位于U11 RNA 3'末端的茎环结构来保护此转录本免受核酸外切酶的体外侵害。在所有成熟的小型稳定RNA上都存在相似的3'茎环结构或涉及3'端的广泛碱基配对。人工茎环结构在3'末端的位置也保护了RNA底物,表明仅RNA结构足以阻止核酸外切酶的起始。 RNA结构在底物转录产物内部位置的放置不会影响核酸外切酶的活性或导致降解中间体的积累。 Pol III前体转录物包含短的poly(U)片段,而不是在其3'端的结构。末端的poly(U)以蛋白质依赖性方式从3'-> 5'核酸外切酶中提取受保护的RNA底物。尽管在体内和体外均发现La蛋白与pol III前体转录物的末端U束有关,但poly(U)不需要La蛋白来保护RNA底物免受3'-> 5'外切核酸酶的影响。总之,这些数据揭示了RNA进化出多种保护自身免受核酸外切酶侵害的方式。

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