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RsgA couples the maturation state of the 30S ribosomal decoding center to activation of its GTPase pocket

机译:RSGA将30S核糖体解码中心的成熟状态致其对其GTP酶口袋的激活

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摘要

During 30S ribosomal subunit biogenesis, assembly factors are believed to prevent accumulation of misfolded intermediate states of low free energy that slowly convert into mature 30S subunits, namely, kinetically trapped particles. Among the assembly factors, the circularly permuted GTPase, RsgA, plays a crucial role in the maturation of the 30S decoding center. Here, directed hydroxyl radical probing and single particle cryo-EM are employed to elucidate RsgA's mechanism of action. Our results show that RsgA destabilizes the 30S structure, including late binding r-proteins, providing a structural basis for avoiding kinetically trapped assembly intermediates. Moreover, RsgA exploits its distinct GTPase pocket and specific interactions with the 30S to coordinate GTPase activation with the maturation state of the 30S subunit. This coordination validates the architecture of the decoding center and facilitates the timely release of RsgA to control the progression of 30S biogenesis.
机译:在30S核糖体亚基生物发生期间,据信,组装因子可防止将被错误的中间状态的积聚的低自由能量的积累缓慢转化为成熟的30s亚基,即动力学上捕获的颗粒。 在组装因子中,循环允许的GTP酶,RSGA在30S解码中心的成熟中起着至关重要的作用。 这里,采用定向羟基自由基探测和单粒子冷冻液来阐明RSGA的作用机制。 我们的研究结果表明,RSGA稳定了30S结构,包括后期结合R-蛋白,为避免动力学捕获的组装中间体提供了结构依据。 此外,RSGA利用其不同的GTP酶口袋和与30S的特定相互作用,以协调GTP酶活化与30S子单元的成熟状态。 该协调验证了解码中心的架构,并有助于及时释放RSGA以控制30S生物发生的进展。

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