Mechanisms of RNAi: mRNA cleavage fragments may indicate stalled RISC.

Torgeir Holen
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Abstract

The molecular mechanism of RNA interference (RNAi) is under intense investigation. We previously demonstrated the existence of inactive siRNAs and also of mRNA cleavage in vivo in human cells. Here it is shown that some siRNAs with low activity leave mRNA cleavage fragments while an siRNA with higher activity does not. The pattern is consistent with both short-term (4-24 hours) and long-term (1-4 days) time-series. Analysis of the putative 3' mRNA cleavage product showed high GC content immediately after the cleavage point. The cleavage fragments might indicate a stalled or slowed RNAi cleavage complex - possibly in the RISC enzyme restoration phase - and thus constitute a novel explanation for the existence of inactive siRNAs.

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RNAi机制:mRNA裂解片段可能提示RISC停滞。
RNA干扰(RNA interference, RNAi)的分子机制是目前研究的热点。我们之前证明了在人细胞中存在非活性sirna和mRNA切割。这里显示,一些低活性的siRNA会留下mRNA的切割片段,而具有较高活性的siRNA则不会。该模式与短期(4-24小时)和长期(1-4天)时间序列一致。对假定的3' mRNA裂解产物的分析显示,在裂解点后立即出现高GC含量。切割片段可能表明RNAi切割复合体的停滞或减慢-可能处于RISC酶恢复阶段-因此构成了对无活性sirna存在的新解释。
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