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Mechanism for Aar2p function as a U5 snRNP assembly factor.

机译:Aar2p的机制用作U5 snRNP装配因子。

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摘要

Little is known about how particle-specific proteins are assembled on spliceosomal small nuclear ribonucleoproteins (snRNPs). Brr2p is a U5 snRNP-specific RNA helicase required for spliceosome catalytic activation and disassembly. In yeast, the Aar2 protein is part of a cytoplasmic precursor U5 snRNP that lacks Brr2p and is replaced by Brr2p in the nucleus. Here we show that Aar2p and Brr2p bind to different domains in the C-terminal region of Prp8p; Aar2p interacts with the RNaseH domain, whereas Brr2p interacts with the Jab1/MPN domain. These domains are connected by a long, flexible linker, but the Aar2p-RNaseH complex sequesters the Jab1/MPN domain, thereby preventing binding by Brr2p. Aar2p is phosphorylated in vivo, and a phospho-mimetic S253E mutation in Aar2p leads to disruption of the Aar2p-Prp8p complex in favor of the Brr2p-Prp8p complex. We propose a model in which Aar2p acts as a phosphorylation-controlled U5 snRNP assembly factor that regulates the incorporation of the particle-specific Brr2p. The purpose of this regulation may be to safeguard against nonspecific RNA binding to Prp8p and/or premature activation of Brr2p activity.
机译:关于如何将颗粒特异性蛋白质组装在剪接小核糖核糖核蛋白(snRNPs)上知之甚少。 Brr2p是剪接体催化激活和分解所需的U5 snRNP特异性RNA解旋酶。在酵母中,Aar2蛋白是缺乏Brr2p的细胞质前体U5 snRNP的一部分,在细胞核中被Brr2p取代。在这里,我们显示Aar2p和Brr2p绑定到Prp8p C端区域的不同域。 Aar2p与RNaseH域相互作用,而Brr2p与Jab1 / MPN域相互作用。这些结构域通过一个长而灵活的连接子相连,但是Aar2p-RNaseH复合体隔离了Jab1 / MPN结构域,从而阻止了Brr2p的结合。 Aar2p在体内被磷酸化,Aar2p中的模拟磷酸S253E突变导致Aar2p-Prp8p复合物的破坏,有利于Brr2p-Prp8p复合物。我们提出了一个模型,其中Aar2p充当磷酸化控制的U5 snRNP装配因子,该因子调节颗粒特异性Brr2p的掺入。该法规的目的可能是防止与Prp8p结合的非特异性RNA和/或Brr2p活性的过早激活。

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