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The Drosophila RNA methyltransferase, DmHen1, modifies germline piRNAs and single-stranded siRNAs in RISC.果蝇RNA甲基转移酶DmHen1可修饰生殖系piRNA和RISC中的单链siRNA。
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The human RNA kinase hClp1 is active on 3' transfer RNA exons and short interfering RNAs.人类RNA激酶hClp1对3'转移RNA外显子和小干扰RNA具有活性。
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Mouse Piwi-interacting RNAs are 2'-O-methylated at their 3' termini.小鼠Piwi相互作用RNA在其3'末端被2'-O-甲基化。
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The 3' termini of mouse Piwi-interacting RNAs are 2'-O-methylated.小鼠Piwi相互作用RNA的3'末端发生了2'-O-甲基化修饰。
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Transcripts targeted by the microRNA-16 family cooperatively regulate cell cycle progression.微小RNA-16家族靶向的转录本协同调节细胞周期进程。
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A novel repeat-associated small interfering RNA-mediated silencing pathway downregulates complementary sense gypsy transcripts in somatic cells of the Drosophila ovary.一种新型的重复相关小干扰RNA介导的沉默途径下调果蝇卵巢体细胞中互补正义吉普赛转录本。
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小干扰RNA双链体的链特异性5'-O-甲基化控制引导链选择和靶向特异性。

Strand-specific 5'-O-methylation of siRNA duplexes controls guide strand selection and targeting specificity.

作者信息

Chen Po Yu, Weinmann Lasse, Gaidatzis Dimos, Pei Yi, Zavolan Mihaela, Tuschl Thomas, Meister Gunter

机构信息

Laboratory of RNA Molecular Biology, Howard Hughes Medical Institute, The Rockefeller University, New York, New York 10021, USA.

出版信息

RNA. 2008 Feb;14(2):263-74. doi: 10.1261/rna.789808. Epub 2007 Dec 19.

DOI:10.1261/rna.789808
PMID:18094121
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2212253/
Abstract

Small interfering RNAs (siRNAs) and microRNAs (miRNAs) guide catalytic sequence-specific cleavage of fully or nearly fully complementary target mRNAs or control translation and/or stability of many mRNAs that share 6-8 nucleotides (nt) of complementarity to the siRNA and miRNA 5' end. siRNA- and miRNA-containing ribonucleoprotein silencing complexes are assembled from double-stranded 21- to 23-nt RNase III processing intermediates that carry 5' phosphates and 2-nt overhangs with free 3' hydroxyl groups. Despite the structural symmetry of a duplex siRNA, the nucleotide sequence asymmetry can generate a bias for preferred loading of one of the two duplex-forming strands into the RNA-induced silencing complex (RISC). Here we show that the 5'-phosphorylation status of the siRNA strands also acts as an important determinant for strand selection. 5'-O-methylated siRNA duplexes refractory to 5' phosphorylation were examined for their biases in siRNA strand selection. Asymmetric, single methylation of siRNA duplexes reduced the occupancy of the silencing complex by the methylated strand with concomitant elimination of its off-targeting signature and enhanced off-targeting signature of the phosphorylated strand. Methylation of both siRNA strands reduced but did not completely abolish RNA silencing, without affecting strand selection relative to that of the unmodified siRNA. We conclude that asymmetric 5' modification of siRNA duplexes can be useful for controlling targeting specificity.

摘要

小干扰RNA(siRNA)和微小RNA(miRNA)可引导对完全或几乎完全互补的靶mRNA进行催化性序列特异性切割,或控制许多与siRNA和miRNA 5'端具有6 - 8个核苷酸(nt)互补性的mRNA的翻译和/或稳定性。含siRNA和miRNA的核糖核蛋白沉默复合物由双链21至23 nt的核糖核酸酶III加工中间体组装而成,这些中间体携带5'磷酸基团和带有游离3'羟基的2 nt突出端。尽管双链siRNA具有结构对称性,但核苷酸序列不对称性可能导致两条双链形成链之一优先加载到RNA诱导沉默复合物(RISC)中产生偏向性。在这里,我们表明siRNA链的5'-磷酸化状态也是链选择的一个重要决定因素。我们研究了对5'磷酸化具有抗性的5'-O-甲基化siRNA双链体在siRNA链选择上的偏向性。siRNA双链体的不对称单甲基化降低了甲基化链在沉默复合物中的占有率,同时消除了其脱靶特征,并增强了磷酸化链的脱靶特征。两条siRNA链的甲基化降低但并未完全消除RNA沉默,相对于未修饰的siRNA,对链选择没有影响。我们得出结论,siRNA双链体的不对称5'修饰可用于控制靶向特异性。