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首页> 外文期刊>The Journal of biological chemistry >RNA Granule Assembly and Disassembly Modulated by Nuclear Factor Associated with Double-stranded RNA 2 and Nuclear Factor 45
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RNA Granule Assembly and Disassembly Modulated by Nuclear Factor Associated with Double-stranded RNA 2 and Nuclear Factor 45

机译:RNA颗粒组件和拆卸因核因子与双链RNA 2和核因子45相关的核因子调节

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RNA granules are large messenger ribonucleoprotein complexes that regulate translation and mRNA translocation to control the timing and location of protein synthesis. The regulation of RNA granule assembly and disassembly is a structural basis of translational control, and its disorder is implicated in degenerative disease. Here, we used proteomic analysis to identify proteins associated with RNA granule protein 105 (RNG105)/caprin1, an RNA-binding protein in RNA granules. Among the identified proteins, we focused on nuclear factor (NF) 45 and its binding partner, nuclear factor associated with dsRNA 2 (NFAR2), and we demonstrated that NF45 promotes disassembly of RNA granules, whereas NFAR2 enhances the assembly of RNA granules in cultured cells. The GQSY domain of NFAR2 was required to associate with messenger ribonucleoprotein complexes containing RNG105/caprin1, and it was structurally and functionally related to the low complexity sequence domain of the fused in sarcoma protein, which drives the assembly of RNA granules. Another domain of NFAR2, the DZF domain, was dispensable for association with the RNG105 complex, but it was involved in positive and negative regulation of RNA granule assembly by being phosphorylated at double-stranded RNA-activated kinase sites and by association with NF45, respectively. These results suggest a novel molecular mechanism for the modulation of RNA granule assembly and disassembly by NFAR2, NF45, and phosphorylation at double-stranded RNA-activated kinase PKR sites.
机译:RNA颗粒是大信使核糖核蛋白复合物,其调节翻译和mRNA易位以控制蛋白质合成的时序和位置。 RNA颗粒组装和拆卸的调节是平移控制的结构基础,其疾病涉及退行性疾病。这里,我们使用蛋白质组学分析来鉴定与RNA颗粒蛋白105(RNG105)/ Caprin1相关的蛋白质,RNA颗粒中的RNA结合蛋白。在所鉴定的蛋白质中,我们专注于核因子(NF)45及其结合伴侣,与DSRNA 2(NFAR2)相关的核因子,并且我们证明NF45促进RNA颗粒的拆卸,而NFAR2增强了培养的RNA颗粒组件细胞。 NFAR2的GQsy结构域需要与含有RNG105 / Caprin1的信使核糖核蛋白复合物相关,并且它在结构上和功能上与Sarcoma蛋白中稠合的低复杂性序列结构域有关,其驱动RNA颗粒的组装。另一种NFAR2,DZF结构域的结构域是可分配与RNG105复合物的结合,而是通过在双链RNA活化激酶位点和与NF45的关联中磷酸化,参与RNA颗粒组件的正和阴性调节。这些结果表明,通过NFAR2,NF45和双链RNA活化激酶PKR位点的NFAR2,NF45和磷酸化进行RNA颗粒组装和拆卸的新的分子机制。

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