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DEAD盒RNA解旋酶Dbp4是小亚基加工体形成和功能所必需的。

DEAD-box RNA helicase Dbp4 is required for small-subunit processome formation and function.

作者信息

Soltanieh Sahar, Osheim Yvonne N, Spasov Krasimir, Trahan Christian, Beyer Ann L, Dragon François

机构信息

Département des sciences biologiques and Centre de recherche BioMed, Université du Québec à Montréal, Montreal, Quebec, Canada.

Department of Microbiology, Immunology and Cancer Biology, University of Virginia Health System, Charlottesville, Virginia, USA.

出版信息

Mol Cell Biol. 2015 Mar;35(5):816-30. doi: 10.1128/MCB.01348-14. Epub 2014 Dec 22.

Abstract

DEAD-box RNA helicase Dbp4 is required for 18S rRNA synthesis: cellular depletion of Dbp4 impairs the early cleavage reactions of the pre-rRNA and causes U14 small nucleolar RNA (snoRNA) to remain associated with pre-rRNA. Immunoprecipitation experiments (IPs) carried out with whole-cell extracts (WCEs) revealed that hemagglutinin (HA)-tagged Dbp4 is associated with U3 snoRNA but not with U14 snoRNA. IPs with WCEs also showed association with the U3-specific protein Mpp10, which suggests that Dbp4 interacts with the functionally active U3 RNP; this particle, called the small-subunit (SSU) processome, can be observed at the 5' end of nascent pre-rRNA. Electron microscopy analyses indicated that depletion of Dbp4 compromised SSU processome formation and cotranscriptional cleavage of the pre-rRNA. Sucrose density gradient analyses revealed that depletion of U3 snoRNA or the Mpp10 protein inhibited the release of U14 snoRNA from pre-rRNA, just as was seen with Dbp4-depleted cells, indicating that alteration of SSU processome components has significant consequences for U14 snoRNA dynamics. We also found that the C-terminal extension flanking the catalytic core of Dbp4 plays an important role in the release of U14 snoRNA from pre-rRNA.

摘要

DEAD盒RNA解旋酶Dbp4是18S rRNA合成所必需的:细胞内Dbp4的缺失会损害前体rRNA的早期切割反应,并导致U14小核仁RNA(snoRNA)与前体rRNA保持结合。用全细胞提取物(WCE)进行的免疫沉淀实验(IP)表明,带有血凝素(HA)标签的Dbp4与U3 snoRNA相关,但与U14 snoRNA不相关。用WCE进行的IP还显示与U3特异性蛋白Mpp10相关,这表明Dbp4与功能活跃的U3核糖核蛋白(RNP)相互作用;这种颗粒称为小亚基(SSU)加工体,可在新生前体rRNA的5'端观察到。电子显微镜分析表明,Dbp4的缺失会损害SSU加工体的形成和前体rRNA的共转录切割。蔗糖密度梯度分析表明,U3 snoRNA或Mpp10蛋白的缺失会抑制U14 snoRNA从前体rRNA的释放,就像在Dbp4缺失的细胞中看到的那样,这表明SSU加工体成分的改变对U14 snoRNA的动态变化有重大影响。我们还发现,Dbp4催化核心侧翼的C末端延伸在前体rRNA释放U14 snoRNA中起重要作用。

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