Robb G Brett, Rana Tariq M
Department of Biochemistry and Molecular Pharmacology, University of Massachusetts Medical School, Worcester, MA 01605, USA.
Mol Cell. 2007 May 25;26(4):523-37. doi: 10.1016/j.molcel.2007.04.016.
RNA interference is a conserved pathway of sequence-specific gene silencing that depends on small guide RNAs and the action of proteins assembled in the RNA-induced silencing complex (RISC). Minimally, the action of RISC requires the endonucleolytic slicer activity of Argonaute2 (Ago2) directed to RNA targets whose sequences are complementary to RISC-incorporated small RNA. To identify RISC components in human cells, we developed an affinity-purification strategy to isolate siRNA-programmed RISC. Here we report the identification of RNA helicase A (RHA) as a human RISC-associated factor. We show that RHA interacts in human cells with siRNA, Ago2, TRBP, and Dicer and functions in the RNAi pathway. In RHA-depleted cells, RNAi was reduced as a consequence of decreased intracellular concentration of active RISC assembled with the guide-strand RNA and Ago2. Our results identify RHA as a RISC component and demonstrate that RHA functions in RISC as an siRNA-loading factor.
RNA干扰是一种序列特异性基因沉默的保守途径,它依赖于小向导RNA以及在RNA诱导沉默复合体(RISC)中组装的蛋白质的作用。RISC的作用至少需要Argonaute2(Ago2)的核酸内切酶切割活性,该活性作用于其序列与RISC中掺入的小RNA互补的RNA靶标。为了鉴定人类细胞中的RISC成分,我们开发了一种亲和纯化策略来分离siRNA编程的RISC。在此,我们报告了RNA解旋酶A(RHA)作为一种人类RISC相关因子的鉴定。我们表明,RHA在人类细胞中与siRNA、Ago2、TRBP和Dicer相互作用,并在RNAi途径中发挥作用。在RHA缺失的细胞中,由于与向导链RNA和Ago2组装的活性RISC细胞内浓度降低,RNAi作用减弱。我们的结果将RHA鉴定为一种RISC成分,并证明RHA在RISC中作为一种siRNA加载因子发挥作用。