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Coupled GTPase and remodelling ATPase activities form a checkpoint for ribosome export

机译:偶联的GTp酶和重塑aTp酶活性形成核糖体输出的检查点

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摘要

Eukaryotic ribosomes are assembled by a complex pathway that extends from the nucleolus to the cytoplasm and is powered by many energy-consuming enzymes. Nuclear export is a key, irreversible step in pre-ribosome maturation, but mechanisms underlying the timely acquisition of export competence remain poorly understood. Here we show that a conserved Saccharomyces cerevisiae GTPase Nug2 (also known as Nog2, and as NGP-1, GNL2 or nucleostemin 2 in human) has a key role in the timing of export competence. Nug2 binds the inter-subunit face of maturing, nucleoplasmic pre-60S particles, and the location clashes with the position of Nmd3, a key pre-60S export adaptor. Nug2 and Nmd3 are not present on the same pre-60S particles, with Nug2 binding before Nmd3. Depletion of Nug2 causes premature Nmd3 binding to the pre-60S particles, whereas mutations in the G-domain of Nug2 block Nmd3 recruitment, resulting in severe 60S export defects. Two pre-60S remodelling factors, the Rea1 ATPase and its co-substrate Rsa4, are present on Nug2-associated particles, and both show synthetic lethal interactions with nug2 mutants. Release of Nug2 from pre-60S particles requires both its K(+)-dependent GTPase activity and the remodelling ATPase activity of Rea1. We conclude that Nug2 is a regulatory GTPase that monitors pre-60S maturation, with release from its placeholder site linked to recruitment of the nuclear export machinery.
机译:真核生物核糖体是通过复杂的途径组装的,该途径从核仁延伸到细胞质,并由许多耗能的酶提供动力。核出口是核糖体成熟前的关键,不可逆转的步骤,但对及时获得出口能力的机制知之甚少。在这里,我们显示了一个保守的酿酒酵母GTPase Nug2(也称为Nog2,在人类中也称为NGP-1,GNL2或nucleostemin 2)在出口能力的时机上具有关键作用。 Nug2结合了成熟的核质60S之前颗粒的亚基间表面,其位置与60S之前的关键输出衔接子Nmd3的位置相冲突。 Nug2和Nmd3不存在于同一60S之前的颗粒上,Nug2结合在Nmd3之前。 Nug2的耗尽会导致Nmd3提前结合60S之前的颗粒,而Nug2的G结构域中的突变会阻止Nmd3募集,从而导致严重的60S出口缺陷。 60S之前的两个重塑因子Rea1 ATPase及其共底物Rsa4存在于Nug2相关的颗粒上,并且都显示与nug2突变体的合成致死相互作用。从60S之前的颗粒释放Nug2既需要其K(+)依赖的GTPase活性,也需要Rea1的重塑ATPase活性。我们得出的结论是,Nug2是一种监管性GTPase,可监测60S之前的成熟,并从其占位位点释放与核出口机器的招募有关。

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