首页> 美国卫生研究院文献>Molecular and Cellular Biology >Distinct Structural Features ofCaprin-1 Mediate Its Interaction with G3BP-1 and Its Induction of Phosphorylation of Eukaryotic Translation Initiation Factor 2α Entry to Cytoplasmic Stress Granules and Selective Interaction with a Subset of mRNAs
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Distinct Structural Features ofCaprin-1 Mediate Its Interaction with G3BP-1 and Its Induction of Phosphorylation of Eukaryotic Translation Initiation Factor 2α Entry to Cytoplasmic Stress Granules and Selective Interaction with a Subset of mRNAs

机译:Caprin-1的独特结构特征介导其与G3BP-1的相互作用以及其诱导的真核翻译起始因子2α的磷酸化进入细胞质应激颗粒以及与mRNA子集的选择性相互作用。

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摘要

Caprin-1 is a ubiquitously expressed, well-conserved cytoplasmic phosphoprotein that is needed for normal progression through the G1-S phase of the cell cycle and occurs in postsynaptic granules in dendrites of neurons. We demonstrate that Caprin-1 colocalizes with RasGAP SH3 domain binding protein-1 (G3BP-1) in cytoplasmic RNA granules associated with microtubules and concentrated in the leading and trailing edge of migrating cells. Caprin-1 exhibits a highly conserved motif, F(M/I/L)Q(D/E)Sx(I/L)D that binds to the NTF-2-like domain of G3BP-1. The carboxy-terminal region of Caprin-1 selectively bound mRNA for c-Myc or cyclin D2, this binding being diminished by mutation of the three RGG motifs and abolished by deletion of the RGG-rich region. Overexpression of Caprin-1 induced phosphorylation of eukaryotic translation initiation factor 2α (eIF-2α) through a mechanism that depended on its ability to bind mRNA, resulting in global inhibition of protein synthesis. However, cells lacking Caprin-1 exhibited no changes in global rates of protein synthesis, suggesting that physiologically, the effects of Caprin-1 on translation were limited to restricted subsets of mRNAs. Overexpression of Caprin-1 induced the formation of cytoplasmic stress granules (SG). Its ability to bind RNA was required to induce SG formation but not necessarily its ability to enter SG. The ability of Caprin-1 or G3BP-1 to induce SG formation or enter them did not depend on their association with each other. The Caprin-1/G3BP-1 complex is likely to regulate the transport and translation of mRNAs of proteins involved with synaptic plasticity in neurons and cellular proliferation and migration in multiple cell types.
机译:Caprin-1是一种普遍表达的,保存良好的胞质磷蛋白,是细胞周期G1-S期正常进展所必需的,并发生在神经元树突的突触后颗粒中。我们证明Caprin-1与RasGAP SH3域结合蛋白1(G3BP-1)在与微管相关的细胞质RNA颗粒中共定位并集中在迁移细胞的前缘和后缘。 Caprin-1表现出高度保守的基序F(M / I / L)Q(D / E)Sx(I / L)D,与G3BP-1的NTF-2-like结构域结合。 Caprin-1的羧基末端区域选择性地结合了c-Myc或cyclin D2的mRNA,这种结合由于三个RGG图案的突变而减弱,而由于富含RGG的区域缺失而被取消。 Caprin-1的过表达通过依赖于其与mRNA结合能力的机制来诱导真核翻译起始因子2α(eIF-2α)的磷酸化,从而导致蛋白质合成的整体抑制。但是,缺乏Caprin-1的细胞在蛋白质合成的整体速率上没有变化,这表明Caprin-1对翻译的影响在生理上仅限于mRNA的受限子集。 Caprin-1的过表达诱导细胞质应激颗粒(SG)的形成。需要其结合RNA的能力来诱导SG形成,但不一定要具有进入SG的能力。 Caprin-1或G3BP-1诱导SG形成或进入SG的能力并不取决于它们彼此之间的联系。 Caprin-1 / G3BP-1复合物可能调节神经元中与突触可塑性有关的蛋白质的mRNA的运输和翻译,以及多种细胞类型中细胞的增殖和迁移。

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