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The structure of Erb1-Ytm1 complex reveals the functional importance of a high-affinity binding between two β-propellers during the assembly of large ribosomal subunits in eukaryotes.Erb1-Ytm1复合物的结构揭示了在真核生物大亚基核糖体组装过程中,两个β-螺旋桨之间高亲和力结合的功能重要性。
Nucleic Acids Res. 2015 Dec 15;43(22):11017-30. doi: 10.1093/nar/gkv1043. Epub 2015 Oct 17.
2
Ribosome biogenesis dysfunction leads to p53-mediated apoptosis and goblet cell differentiation of mouse intestinal stem/progenitor cells.核糖体生物合成功能障碍导致小鼠肠道干细胞/祖细胞的p53介导的凋亡和杯状细胞分化。
Cell Death Differ. 2015 Nov;22(11):1865-76. doi: 10.1038/cdd.2015.57. Epub 2015 Jun 12.
3
WDR12, a Member of Nucleolar PeBoW-Complex, Is Up-Regulated in Failing Hearts and Causes Deterioration of Cardiac Function.WDR12是核仁PeBoW复合物的成员之一,在衰竭心脏中上调并导致心脏功能恶化。
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Association Between Coronary Artery Disease Genetic Variants and Subclinical Atherosclerosis: An Association Study and Meta-analysis.冠状动脉疾病基因变异与亚临床动脉粥样硬化之间的关联:一项关联研究与荟萃分析
Rev Esp Cardiol (Engl Ed). 2015 Oct;68(10):869-77. doi: 10.1016/j.rec.2014.10.023. Epub 2015 Mar 21.
5
Nucleolar protein PES1 is a marker of neuroblastoma outcome and is associated with neuroblastoma differentiation.核仁蛋白PES1是神经母细胞瘤预后的标志物,且与神经母细胞瘤分化相关。
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Nucleolar stress with and without p53.伴有和不伴有p53的核仁应激
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7
The nucleolus as a fundamental regulator of the p53 response and a new target for cancer therapy.核仁作为p53反应的基本调节因子及癌症治疗的新靶点。
Biochim Biophys Acta. 2015 Jul;1849(7):821-9. doi: 10.1016/j.bbagrm.2014.10.007. Epub 2014 Nov 11.
8
A network of assembly factors is involved in remodeling rRNA elements during preribosome maturation.一个组装因子网络参与了在核糖体前体成熟过程中 rRNA 元件的重塑。
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9
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10
p53 and ribosome biogenesis stress: the essentials.p53 与核糖体生物发生应激:要点。
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核糖体组装因子Ytm1泛素样结构域的晶体结构及其与AAA-ATP酶Midasin相互作用的表征

The Crystal Structure of the Ubiquitin-like Domain of Ribosome Assembly Factor Ytm1 and Characterization of Its Interaction with the AAA-ATPase Midasin.

作者信息

Romes Erin M, Sobhany Mack, Stanley Robin E

机构信息

From the Signal Transduction Laboratory, NIEHS, National Institutes of Health, Department of Health and Human Services, Research Triangle Park, North Carolina 27709.

From the Signal Transduction Laboratory, NIEHS, National Institutes of Health, Department of Health and Human Services, Research Triangle Park, North Carolina 27709

出版信息

J Biol Chem. 2016 Jan 8;291(2):882-93. doi: 10.1074/jbc.M115.693259. Epub 2015 Nov 24.

DOI:10.1074/jbc.M115.693259
PMID:26601951
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4705406/
Abstract

The synthesis of eukaryotic ribosomes is a complex, energetically demanding process requiring the aid of numerous non-ribosomal factors, such as the PeBoW complex. The mammalian PeBoW complex, composed of Pes1, Bop1, and WDR12, is essential for the processing of the 32S preribosomal RNA. Previous work in Saccharomyces cerevisiae has shown that release of the homologous proteins in this complex (Nop7, Erb1, and Ytm1, respectively) from preribosomal particles requires Rea1 (midasin or MDN1 in humans), a large dynein-like protein. Midasin contains a C-terminal metal ion-dependent adhesion site (MIDAS) domain that interacts with the N-terminal ubiquitin-like (UBL) domain of Ytm1/WDR12 as well as the UBL domain of Rsa4/Nle1 in a later step in the ribosome maturation pathway. Here we present the crystal structure of the UBL domain of the WDR12 homologue from S. cerevisiae at 1.7 Å resolution and demonstrate that human midasin binds to WDR12 as well as Nle1 through their respective UBL domains. Midasin contains a well conserved extension region upstream of the MIDAS domain required for binding WDR12 and Nle1, and the interaction is dependent upon metal ion coordination because removal of the metal or mutation of residues that coordinate the metal ion diminishes the interaction. Mammalian WDR12 displays prominent nucleolar localization that is dependent upon active ribosomal RNA transcription. Based upon these results, we propose that release of the PeBoW complex and subsequent release of Nle1 by midasin is a well conserved step in the ribosome maturation pathway in both yeast and mammalian cells.

摘要

真核核糖体的合成是一个复杂且耗能巨大的过程,需要众多非核糖体因子的协助,比如PeBoW复合体。由Pes1、Bop1和WDR12组成的哺乳动物PeBoW复合体对于32S前核糖体RNA的加工至关重要。先前在酿酒酵母中的研究表明,该复合体中同源蛋白(分别为Nop7、Erb1和Ytm1)从前核糖体颗粒的释放需要Rea1(人类中的midasin或MDN1),一种大型动力蛋白样蛋白。Midasin包含一个C端金属离子依赖性黏附位点(MIDAS)结构域,该结构域在核糖体成熟途径的后续步骤中与Ytm1/WDR12的N端泛素样(UBL)结构域以及Rsa4/Nle1的UBL结构域相互作用。在此,我们展示了酿酒酵母WDR12同源物的UBL结构域在1.7 Å分辨率下的晶体结构,并证明人类midasin通过其各自的UBL结构域与WDR12以及Nle1结合。Midasin在结合WDR12和Nle1所需的MIDAS结构域上游含有一个高度保守的延伸区域,并且这种相互作用依赖于金属离子配位,因为去除金属或使配位金属离子的残基发生突变会减弱这种相互作用。哺乳动物WDR12表现出显著的核仁定位,这依赖于活跃的核糖体RNA转录。基于这些结果,我们提出PeBoW复合体的释放以及随后midasin对Nle1的释放是酵母和哺乳动物细胞核糖体成熟途径中一个高度保守的步骤。