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首页> 外文期刊>The Journal of biological chemistry >Nuclear/Nucleolar GTPase 2 Proteins as a Subfamily of YlqF/YawG GTPases Function in Pre-60S Ribosomal Subunit Maturation of Mono- and Dicotyledonous Plants
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Nuclear/Nucleolar GTPase 2 Proteins as a Subfamily of YlqF/YawG GTPases Function in Pre-60S Ribosomal Subunit Maturation of Mono- and Dicotyledonous Plants

机译:核/核仁GTPA酶2蛋白作为YLQF / YAWG GTP酶的亚家族,在60s核糖体亚基的单核糖体亚单位成熟的单象和二象植物

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The YlqF/YawG families are important GTPases involved in ribosome biogenesis, cell proliferation, or cell growth, however, no plant homologs have yet to be characterized. Here we isolated rice (Oryza sativa) and Arabidopsis nuclear/nucleolar GTPase 2 (OsNug2 and AtNug2, respectively) that belong to the YawG subfamily and characterized them for pre-60S ribosomal subunit maturation. They showed typical intrinsic YlqF/YawG family GTPase activities in bacteria and yeasts with kcat values 0.12 ± 0.007 min?1 (n = 6) and 0.087 ± 0.002 min?1 (n = 4), respectively, and addition of 60S ribosomal subunits stimulated their activities in vitro. In addition, OsNug2 rescued the lethality of the yeast nug2 null mutant through recovery of 25S pre-rRNA processing. By yeast two-hybrid screening five clones, including a putative one of 60S ribosomal proteins, OsL10a, were isolated. Subcellular localization and pulldown assays resulted in that the N-terminal region of OsNug2 is sufficient for nucleolar/nuclear targeting and association with OsL10a. OsNug2 is physically associated with pre-60S ribosomal complexes highly enriched in the 25S, 5.8S, and 5S rRNA, and its interaction was stimulated by exogenous GTP. Furthermore, the AtNug2 knockdown mutant constructed by the RNAi method showed defective growth on the medium containing cycloheximide. Expression pattern analysis revealed that the distribution of AtNug2 mainly in the meristematic region underlies its potential role in active plant growth. Finally, it is concluded that Nug2/Nog2p GTPase from mono- and didicotyledonous plants is linked to the pre-60S ribosome complex and actively processed 27S into 25S during the ribosomal large subunit maturation process, i.e. prior to export to the cytoplasm.
机译:YLQF / YAWG系列是涉及核糖体生物发生,细胞增殖或细胞生长的重要GTP酶,但是,尚未表征植物同源物。在这里,我们孤立的米(Oryza sativa)和拟南芥核/核仁GTP酶2(分别属于YAWG亚家族的奥腹肌核酸核/核仁GTP酶2,并表征为60s核糖体亚基成熟。它们在细菌和酵母中展示了典型的内在YLQF / YAWG系列GTP酶活性,KCAT值0.12±0.007分钟α1(n = 6)和0.087±0.002 min?1(n = 4),并刺激60s核糖体亚基他们在体外的活动。此外,osnug2通过回收25s预rRNA加工来拯救酵母Nug2 null突变体的致命性。通过酵母双杂交筛选五个克隆,包括预防60s核糖体蛋白,OSL10a,osl10a。亚细胞定位和下拉测定产生的是,OSNug2的N末端区域足以用于核核靶向和与OSL10a的关系。 OSNug2与60s的核糖体复合物物理相关,在25s,5.8s和5s rRNA中高度富集,并且通过外源GTP刺激其相互作用。此外,由RNAI方法构建的ATNug2敲低突变体在含环己酰亚胺的培养基上显示出缺陷的生长。表达模式分析显示,ATNUG2主要在共源区的分布基础是其在活性植物生长中的潜在作用。最后,得出结论,从单胞和滴岩植物的Nug2 / Nog2P GTP酶与60s核糖体复合物联接,并在核糖体大亚基成熟过程中主动加工27s分为25s,即在出口到细胞质之前。

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