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A molecular clamp ensures allosteric coordination of peptidyltransfer and ligand binding to the ribosomal A-site

机译:分子钳确保肽基转移和配体与核糖体A位点的变构配位

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摘要

Although the ribosome is mainly comprised of rRNA and many of its critical functions occur through RNA–RNA interactions, distinct domains of ribosomal proteins also participate in switching the ribosome between different conformational/functional states. Prior studies demonstrated that two extended domains of ribosomal protein L3 form an allosteric switch between the pre- and post-translocational states. Missing was an explanation for how the movements of these domains are communicated among the ribosome's functional centers. Here, a third domain of L3 called the basic thumb, that protrudes roughly perpendicular from the W-finger and is nestled in the center of a cagelike structure formed by elements from three separate domains of the large subunit rRNA is investigated. Mutagenesis of basically charged amino acids of the basic thumb to alanines followed by detailed analyses suggests that it acts as a molecular clamp, playing a role in allosterically communicating the ribosome's tRNA occupancy status to the elongation factor binding region and the peptidyltransferase center, facilitating coordination of their functions through the elongation cycle. The observation that these mutations affected translational fidelity, virus propagation and cell growth demonstrates how small structural changes at the atomic scale can propagate outward to broadly impact the biology of cell.
机译:尽管核糖体主要由rRNA组成,并且其许多关键功能是通过RNA-RNA相互作用发生的,但核糖体蛋白的不同结构域也参与了核糖体在不同构象/功能状态之间的转换。先前的研究表明,核糖体蛋白L3的两个扩展域在易位前和易位后状态之间形成了变构开关。缺少的解释是这些域的​​运动如何在核糖体的功能中心之间传递。在这里,研究了L3的第三个域,称为基本拇指,该域从W手指大致垂直突出,并位于大亚基rRNA的三个独立域的元素形成的笼状结构的中心。基本拇指的基本带电荷的氨基酸诱变为丙氨酸,然后进行详细分析,表明它起分子钳的作用,在变构地将核糖体的tRNA占用状态传达给延伸因子结合区和肽基转移酶中心时发挥了作用,促进了核糖体的协调。在延伸周期中它们的功能。这些突变影响翻译保真度,病毒繁殖和细胞生长的观察结果表明,原子级的微小结构变化可以向外传播,从而广泛影响细胞生物学。

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