Berger A, Ivanova E, Gareau C, Scherrer A, Mazroui R, Strub K
Department of Cell Biology, University of Geneva, 1211 Geneva, Switzerland.
Département de biologie moléculaire, biochimie médicale et pathologie Université Laval, 4 Québec G1V0A6, Canada.
Nucleic Acids Res. 2014;42(17):11203-17. doi: 10.1093/nar/gku822. Epub 2014 Sep 8.
Stress granules (SGs) are formed in response to stress, contain mRNAs, 40S ribosomal subunits, initiation factors, RNA-binding and signaling proteins, and promote cell survival. Our study describes a novel function of the protein heterodimer SRP9/14 and Alu RNA in SG formation and disassembly. In human cells, SRP9/14 exists assembled into SRP, bound to Alu RNA and as a free protein. SRP9/14, but not SRP, localizes to SGs following arsenite or hippuristanol treatment. Depletion of the protein decreases SG size and the number of SG-positive cells. Localization and function of SRP9/14 in SGs depend primarily on its ability to bind directly to the 40S subunit. Binding of SRP9/14 to 40S and Alu RNA is mutually exclusive indicating that the protein alone is bound to 40S in SGs and that Alu RNA might competitively regulate 40S binding. Indeed, by changing the effective Alu RNA concentration in the cell or by expressing an Alu RNA binding-defective protein we were able to influence SG formation and disassembly. Our findings suggest a model in which SRP9/14 binding to 40S promotes SG formation whereas the increase in cytoplasmic Alu RNA following stress promotes disassembly of SGs by disengaging SRP9/14 from 40S.
应激颗粒(SGs)在应激反应中形成,包含信使核糖核酸(mRNAs)、40S核糖体亚基、起始因子、RNA结合蛋白和信号蛋白,并促进细胞存活。我们的研究描述了蛋白质异二聚体SRP9/14和Alu RNA在应激颗粒形成和拆解中的新功能。在人类细胞中,SRP9/14以组装进信号识别颗粒(SRP)的形式存在,与Alu RNA结合,也以游离蛋白的形式存在。在亚砷酸盐或马桑毒素处理后,SRP9/14而非SRP定位于应激颗粒。该蛋白的缺失会减小应激颗粒的大小并减少应激颗粒阳性细胞的数量。SRP9/14在应激颗粒中的定位和功能主要取决于其直接结合40S亚基的能力。SRP9/14与40S和Alu RNA的结合是相互排斥的,这表明在应激颗粒中该蛋白单独与40S结合,并且Alu RNA可能竞争性调节40S的结合。事实上,通过改变细胞中Alu RNA的有效浓度或表达一种Alu RNA结合缺陷蛋白,我们能够影响应激颗粒的形成和拆解。我们的研究结果提出了一个模型,其中SRP9/14与40S的结合促进应激颗粒的形成,而应激后细胞质中Alu RNA的增加通过使SRP9/14与40S分离来促进应激颗粒的拆解。