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小干扰RNA的特异性:RNA干扰机制及减少脱靶效应的策略。

siRNA Specificity: RNAi Mechanisms and Strategies to Reduce Off-Target Effects.

作者信息

Neumeier Julia, Meister Gunter

机构信息

Regensburg Center for Biochemistry (RCB), Laboratory for RNA Biology, University of Regensburg, Regensburg, Germany.

出版信息

Front Plant Sci. 2021 Jan 28;11:526455. doi: 10.3389/fpls.2020.526455. eCollection 2020.

Abstract

Short interfering RNAs (siRNAs) are processed from long double-stranded RNA (dsRNA), and a guide strand is selected and incorporated into the RNA-induced silencing complex (RISC). Within RISC, a member of the Argonaute protein family directly binds the guide strand and the siRNA guides RISC to fully complementary sites on-target RNAs, which are then sequence-specifically cleaved by the Argonaute protein-a process commonly referred to as RNA interference (RNAi). In animals, endogenous microRNAs (miRNAs) function similarly but do not lead to direct cleavage of the target RNA but to translational inhibition followed by exonucleolytic decay. This is due to only partial complementarity between the miRNA and the target RNA. SiRNAs, however, can function as miRNAs, and partial complementarity can lead to miRNA-like off-target effects in RNAi applications. Since siRNAs are widely used not only for screening but also for therapeutics as well as crop protection purposes, such miRNA-like off-target effects need to be minimized. Strategies such as RNA modifications or pooling of siRNAs have been developed and are used to reduce off-target effects.

摘要

短干扰RNA(siRNA)由长双链RNA(dsRNA)加工而成,一条引导链被选择并整合到RNA诱导沉默复合体(RISC)中。在RISC内,AGO蛋白家族的一个成员直接结合引导链,siRNA引导RISC至靶标RNA上完全互补的位点,然后由AGO蛋白进行序列特异性切割——这一过程通常称为RNA干扰(RNAi)。在动物中,内源性微小RNA(miRNA)的作用机制与之相似,但不会导致靶标RNA的直接切割,而是导致翻译抑制,随后进行核酸外切降解。这是由于miRNA与靶标RNA之间只有部分互补性。然而,siRNA可以发挥miRNA的功能,部分互补性会在RNAi应用中导致类似miRNA的脱靶效应。由于siRNA不仅广泛用于筛选,还用于治疗以及作物保护目的,因此需要尽量减少这种类似miRNA的脱靶效应。已经开发出如RNA修饰或siRNA混合等策略,并用于减少脱靶效应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/82fd/7876455/75a387510b9e/fpls-11-526455-g001.jpg

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