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RNA干扰原理图解

2016年06月22日 06:45:59人气:897来源:上海士锋生物科技有限公司

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Long double-stranded RNAs (dsRNAs; typically >200 nt) can be used to silence the expression of target genes in a variety of organisms and cell types (e.g., worms, fruit flies, and plants). Upon introduction, the long dsRNAs enter a cellular pathway that is commonly referred to as the RNA interference (RNAi) pathway. First, the dsRNAs get processed into 20-25 nucleotide (nt) small interfering RNAs (siRNAs) by an RNase III-like enzymecalled Dicer (initiation step). Then, the siRNAs assemble into endoribonuclease-containing complexes known as RNA-induced silencing complexes (RISCs), unwinding in the process. The siRNA strands subsequently guide the RISCs to complementary RNA molecules, where they cleave and destroy the cognate RNA (effecter step). Cleavage of cognate RNA takes place near the middle of the region bound by the siRNA strand.

In mammalian Cells, introduction of long dsRNA (>30 nt) initiates a potent antiviral response, exemplified by nonspecific inhibition of protein synthesis and RNA degradation. The mammalian antiviral response can be bypassed, however, by the introduction or expression of sirnas.

<img alt="RNA干扰原理图解" rna干扰原理图解"="" align="center" border="1" height="550" data-cke-saved-src="http://www.bbioo。。com/uploadfile/200507/20050709101113592.gif" src="http://www.bbioo。。com/uploadfile/200507/20050709101113592.gif" width="251" style="vertical-align: middle; border: 0px;">

The Mechanism of RNA Interference (RNAi)

上海士锋生物科技有限公司作者

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