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首页> 外文期刊>Nucleic acids research >YB-1, an abundant core mRNA-binding protein, has the capacity to form an RNA nucleoprotein filament: a structural analysis
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YB-1, an abundant core mRNA-binding protein, has the capacity to form an RNA nucleoprotein filament: a structural analysis

机译:YB-1是一种丰富的核心mRNA结合蛋白,具有形成RNA核蛋白丝的能力:结构分析

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摘要

The structural rearrangements accompanying mRNA during translation in mammalian cells remain poorly understood. Here, we discovered that YB-1 (YBX1), a major partner of mRNAs in the cytoplasm, forms a linear nucleoprotein filament with mRNA, when part of the YB-1 unstructured C-terminus has been truncated. YB-1 possesses a cold-shock domain (CSD), a remnant of bacterial cold shock proteins that have the ability to stimulate translation under the low temperatures through an RNA chaperone activity. The structure of the nucleoprotein filament indicates that the CSD of YB-1 preserved its chaperone activity also in eukaryotes and shows that mRNA is channeled between consecutive CSDs. The energy benefit needed for the formation of stable nucleoprotein filament relies on an electrostatic zipper mediated by positively charged amino acid residues in the YB-1 C-terminus. Thus, YB-1 displays a structural plasticity to unfold structured mRNAs into extended linear filaments. We anticipate that our findings will shed the light on the scanning of mRNAs by ribosomes during the initiation and elongation steps of mRNA translation.
机译:哺乳动物细胞翻译过程中伴随mRNA的结构重排仍然知之甚少。在这里,我们发现YB-1(YBX1)是细胞质中mRNA的主要伴侣,当部分YB-1非结构化C末端被截短时,与mRNA形成了线性核蛋白丝。 YB-1具有冷休克结构域(CSD),这是一种细菌冷休克蛋白的残留物,能够通过RNA伴侣活性在低温下刺激翻译。核蛋白丝的结构表明,YB-1的CSD在真核生物中也保留了其伴侣分子的活性,并表明mRNA在连续的CSD之间传递。形成稳定的核蛋白丝所需的能量优势取决于YB-1 C末端带正电荷的氨基酸残基介导的静电拉链。因此,YB-1显示出结构可塑性,可将结构化的mRNA展开为延伸的线性细丝。我们预期,我们的发现将为核糖体在mRNA翻译的起始和延伸步骤中对mRNA的扫描提供启示。

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