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Slicer-independent mechanism drives small-RNA strand separation during human RISC assembly

机译:切片机独立机制在人类RISC组装过程中驱动小RNA链分离

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摘要

Small RNA silencing is mediated by the effector RNA-induced silencing complex (RISC) that consists of an Argonaute protein (AGOs 1–4 in humans). A fundamental step during RISC assembly involves the separation of two strands of a small RNA duplex, whereby only the guide strand is retained to form the mature RISC, a process not well understood. Despite the widely accepted view that ‘slicer-dependent unwinding’ via passenger-strand cleavage is a prerequisite for the assembly of a highly complementary siRNA into the AGO2-RISC, here we show by careful re-examination that ‘slicer-independent unwinding’ plays a more significant role in human RISC maturation than previously appreciated, not only for a miRNA duplex, but, unexpectedly, for a highly complementary siRNA as well. We discovered that ‘slicer-dependency’ for the unwinding was affected primarily by certain parameters such as temperature and Mg2+. We further validate these observations in non-slicer AGOs (1, 3 and 4) that can be programmed with siRNAs at the physiological temperature of humans, suggesting that slicer-independent mechanism is likely a common feature of human AGOs. Our results now clearly explain why both miRNA and siRNA are found in all four human AGOs, which is in striking contrast to the strict small-RNA sorting system in Drosophila.
机译:小RNA沉默是由效应RNA诱导的沉默复合物(RISC)介导的,该复合物由Argonaute蛋白(人类中的AGO 1-4)组成。 RISC组装过程中的基本步骤涉及分离小RNA双链体的两条链,从而仅保留引导链以形成成熟的RISC,这一过程尚不为人所知。尽管广泛接受的观点是,通过乘客链裂解进行的“依赖于切片子的退绕”是将高度互补的siRNA组装到AGO2-RISC中的前提,但在这里,我们通过仔细的重新研究表明,“与切片器无关的退绕”发挥了作用不仅对于miRNA双链体,而且在意想不到的情况下,对于高度互补的siRNA,在人类RISC成熟中的作用也比以前更重要。我们发现,放卷的“切片器依赖性”主要受某些参数(例如温度和Mg 2 + )的影响。我们进一步验证了可在人的生理温度下用siRNA编程的非切片AGO(1、3和4)中的这些观察结果,表明切片机独立机制可能是人类AGO的共同特征。现在,我们的结果清楚地解释了为什么在所有四个人类AGO中都同时发现了miRNA和siRNA,这与果蝇中严格的小RNA分选系统形成了鲜明的对比。

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