果蝇 Argonautes 对 microRNA 链选择的不同机制。

Distinct mechanisms for microRNA strand selection by Drosophila Argonautes.

机构信息

Department of Developmental Biology, Sloan-Kettering Institute, New York, NY 10065, USA.

出版信息

Mol Cell. 2009 Nov 13;36(3):431-44. doi: 10.1016/j.molcel.2009.09.027.

Abstract

In Drosophila, miRNA strands are predominantly sorted into AGO1 to regulate seed-matched target transcripts, while their partner miRNA* strands are thought to be mostly degraded. Here, we report that Drosophila Argonautes exhibit different strand preferences for miRNA duplexes, and that in particular, many miRNA* species accumulate in the RNAi effector AGO2. AGO2-loaded miRNA* species require canonical RNAi factors for their accumulation, are efficiently 3' modified, and are preferentially active on extensively matched target transcripts. Differential miRNA/miRNA* sorting profiles are correlated with specific central mismatches. In vitro assays revealed an active role for Watson-Crick base-pairing at positions 9 and 10 in promoting strand selection by AGO2, with little reciprocal effect on strand selection by AGO1. We conclude that miRNA strand selection and sorting are actually linked processes that stem from distinct loading preferences of AGO proteins and that independent sorting of duplex strands is a general feature of Drosophila microRNA genes.

摘要

在果蝇中,miRNA 链主要被分拣到 AGO1 以调节与种子匹配的靶标转录物,而其互补的 miRNA链则被认为大多被降解。在这里,我们报告称果蝇 Argonautes 对 miRNA 双链体表现出不同的链偏好,特别是许多 miRNA物种在 RNAi 效应因子 AGO2 中积累。AGO2 加载的 miRNA物种需要典型的 RNAi 因子来积累,能够有效地进行 3' 修饰,并且在广泛匹配的靶标转录物上具有优先活性。差异 miRNA/miRNA分拣谱与特定的中央错配相关。体外实验表明,在位置 9 和 10 处 Watson-Crick 碱基配对在促进 AGO2 的链选择中发挥积极作用,而对 AGO1 的链选择几乎没有相互影响。我们得出结论,miRNA 链选择和分拣实际上是由 AGO 蛋白的不同加载偏好所产生的关联过程,并且双链体的独立分拣是果蝇 microRNA 基因的普遍特征。

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