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Conversion of mammalian tRNA 3 processing endoribonuclease to four-base-recognizing RNA cutters.

机译:哺乳动物tRNA 3加工核糖核酸内切酶向四碱基识别RNA切割器的转化。

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摘要

The spermidine-dependent, sequence-specific endoribonuclease (RNase 65) activities in mammalian cell extracts require both protein and 3' truncated tRNA, species of which direct their substrate sequence specificity. Computer analysis for searching possible base pairing between substrate RNAs and their corresponding 3' truncated tRNA, suggested a unified model for substrate recognition mechanism, in which a four-nucleotide (nt) sequence in the target tRNAs 1 nt upstream of their cleavage site, base pairs with the 5' terminal 4 nt sequence of their corresponding 3' truncated tRNA. This model was supported by experiments with several RNA substrates containing a substituted nucleotide in the target 4 nt sequence. In this model, the tRNA substrates and their corresponding 3' truncated tRNA form a complex resembling a 5' processed tRNA precursor containing a 3' trailer, suggesting that the protein component of RNase 65 is identical to tRNA 3' processing endoribonuclease (3' tRNase). Actually, 3' tRNase purified from pig liver cleaved the target RNAs at the expected sites only in the presence of their corresponding 3' truncated tRNA. These results show that the 3' tRNase can be converted to 4 nt specific RNA cutters using the 3' truncated tRNAs.
机译:哺乳动物细胞提取物中亚精胺依赖性,序列特异性内切核糖核酸酶(RNase 65)的活性需要蛋白质和3'截短的tRNA,它们的种类指导其底物序列特异性。通过计算机分析寻找底物RNA及其对应的3'截短tRNA之间可能的碱基配对,提出了底物识别机制的统一模型,其中靶tRNA的4个核苷酸(nt)序列位于其切割位点上游1 nt碱基处与它们相应的3'截短的tRNA的5'末端4nt序列配对。通过在靶标4 nt序列中包含取代核苷酸的几种RNA底物进行实验,从而支持了该模型。在此模型中,tRNA底物及其相应的3'截短的tRNA形成类似于5'加工的tRNA前体的复合物,其中包含3'尾料,这表明RNase 65的蛋白质​​成分与tRNA 3'加工核糖核酸酶(3'tRNase)相同)。实际上,从猪肝中纯化的3'tRNase仅在其相应的3'截短tRNA存在的情况下才在预期位点切割靶RNA。这些结果表明,可以使用3'截短的tRNA将3'tRNase转换为4 nt特异性RNA切割子。

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