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首页> 外文期刊>Molecular and Cellular Biology >Evidence that the AAA+ Proteins TIP48 and TIP49 Bridge Interactions between 15.5K and the Related NOP56 and NOP58 Proteins during Box C/D snoRNP Biogenesis
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Evidence that the AAA+ Proteins TIP48 and TIP49 Bridge Interactions between 15.5K and the Related NOP56 and NOP58 Proteins during Box C/D snoRNP Biogenesis

机译:框C / D snoRNP生物发生过程中AAA +蛋白TIP48和TIP49桥接15.5K与相关NOP56和NOP58蛋白之间相互作用的证据

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摘要

The box C/D small nucleolar RNPs (snoRNPs) are essential for the processing and modification of rRNA. TIP48 and TIP49 are two related AAA+ proteins that are essential for the formation of box C/D snoRNPs. These proteins are key components of the pre-snoRNP complexes, but their exact role in box C/D snoRNP biogenesis is largely uncharacterized. Here we report that TIP48 and TIP49 interact with one another in vitro, and only the TIP48/TIP49 complex, but not the individual proteins, possesses significant ATPase activity. Loss of TIP48 and TIP49 results in a change in pre-snoRNA levels and a loss of U3 snoRNA signal in the Cajal body. We show that TIP48 and TIP49 make multiple interactions with core snoRNP proteins and biogenesis factors and that these interactions are often regulated by the presence of ATP. Furthermore, we demonstrate that TIP48 and TIP49 efficiently bridge interactions between the core box C/D proteins NOP56 or NOP58 and 15.5K. Our data imply that the snoRNP assembly factor NUFIP can regulate the interactions between TIP48 and TIP49 and the core box C/D proteins. We suggest that snoRNP assembly involves an intricate series of interactions that are mediated/regulated by bridging factors and chaperones.
机译:盒式C / D小核仁RNP(snoRNP)对于rRNA的加工和修饰至关重要。 TIP48和TIP49是两种相关的AAA + 蛋白质,它们对于形成盒C / D snoRNP至关重要。这些蛋白质是pre-snoRNP复合物的关键成分,但它们在框C / D snoRNP生物发生中的确切作用在很大程度上尚不明确。在这里,我们报告TIP48和TIP49在体外彼此相互作用,并且只有TIP48 / TIP49复合体(而不是单个蛋白质)具有明显的ATPase活性。 TIP48和TIP49的缺失会导致前SnoRNA水平发生变化,并使Cajal体内的U3 snoRNA信号丢失。我们显示,TIP48和TIP49与核心snoRNP蛋白和生物发生因子进行多种相互作用,并且这些相互作用通常受ATP的存在调节。此外,我们证明了TIP48和TIP49有效地桥接了核心框C / D蛋白NOP56或NOP58与15.5K之间的相互作用。我们的数据表明,snoRNP装配因子NUFIP可以调节TIP48和TIP49与核心盒C / D蛋白之间的相互作用。我们建议snoRNP组装涉及一系列复杂的相互作用,这些相互作用是由桥接因子和分子伴侣介导/调节的。

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