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首页> 外文期刊>Nature Communications >Sequential domain assembly of ribosomal protein S3 drives 40S subunit maturation
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Sequential domain assembly of ribosomal protein S3 drives 40S subunit maturation

机译:核糖体蛋白S3的顺序域组装驱动40S亚基成熟

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Eukaryotic ribosomes assemble by association of ribosomal RNA with ribosomal proteins into nuclear precursor particles, which undergo a complex maturation pathway coordinated by non-ribosomal assembly factors. Here, we provide functional insights into how successive structural re-arrangements in ribosomal protein S3 promote maturation of the 40S ribosomal subunit. We show that S3 dimerizes and is imported into the nucleus with its N-domain in a rotated conformation and associated with the chaperone Yar1. Initial assembly of S3 with 40S precursors occurs via its C-domain, while the N-domain protrudes from the 40S surface. Yar1 is replaced by the assembly factor Ltv1, thereby fixing the S3 N-domain in the rotated orientation and preventing its 40S association. Finally, Ltv1 release, triggered by phosphorylation, and flipping of the S3 N-domain into its final position results in the stable integration of S3. Such a stepwise assembly may represent a new paradigm for the incorporation of ribosomal proteins.
机译:真核生物核糖体通过核糖体RNA与核糖体蛋白的结合而组装成核前体颗粒,其经历了由非核糖体组装因子协调的复杂的成熟途径。在这里,我们提供功能上的洞察力,以了解核糖体蛋白S3中连续的结构重排如何促进40S核糖体亚基的成熟。我们显示,S3二聚化并以旋转构型与分子伴侣Yar1结合,并以其N结构域导入细胞核。 S3与40S前体的初始组装是通过其C结构域进行的,而N结构域则从40S表面突出。 Yar1被装配系数Ltv1代替,从而将S3 N域固定在旋转方向上并防止其40S关联。最后,Ltv1释放是由磷酸化触发的,并且S3 N结构域翻转到其最终位置会导致S3稳定整合。这样的逐步组装可以代表核糖体蛋白掺入的新范例。

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