Pöll Gisela, Li Shuang, Ohmayer Uli, Hierlmeier Thomas, Milkereit Philipp, Perez-Fernandez Jorge
Lehrstuhl für Biochemie III, Universität Regensburg, Regensburg, Germany.
PLoS One. 2014 Dec 12;9(12):e114898. doi: 10.1371/journal.pone.0114898. eCollection 2014.
Eukaryotic ribosome biogenesis is a multistep process involving more than 150 biogenesis factors, which interact transiently with pre-ribosomal particles to promote their maturation. Some of these auxiliary proteins have been isolated in complexes found separate from the ribosomal environment. Among them, are 3 large UTP subcomplexes containing 6 or 7 protein subunits which are involved in the early steps of ribosome biogenesis. The composition of the UTP subcomplexes and the network of binary interactions between protein subunits have been analyzed previously. To obtain further insights into the structural and biochemical properties of UTP subcomplexes, we established a heterologous expression system to allow reconstitution of the yeast tUTP/UTP A and UTP B subcomplexes from their candidate subunits. The results of a series of reconstitution experiments involving different combinations of protein subunits are in good agreement with most of the previously observed binary interactions. Moreover, in combination with additional biochemical analyses, several stable building blocks of the UTP subcomplexes were identified. Based on these findings, we present a refined model of the tUTP/UTP A and UTP B architecture.
真核生物核糖体生物合成是一个多步骤过程,涉及150多种生物合成因子,这些因子与核糖体前体颗粒短暂相互作用以促进其成熟。其中一些辅助蛋白已在与核糖体环境分离的复合物中分离出来。其中包括3个大型UTP亚复合物,它们含有6或7个蛋白质亚基,参与核糖体生物合成的早期步骤。之前已经分析了UTP亚复合物的组成以及蛋白质亚基之间的二元相互作用网络。为了进一步深入了解UTP亚复合物的结构和生化特性,我们建立了一个异源表达系统,以便从其候选亚基中重组酵母tUTP/UTP A和UTP B亚复合物。一系列涉及不同蛋白质亚基组合的重组实验结果与之前观察到的大多数二元相互作用高度一致。此外,结合其他生化分析,确定了UTP亚复合物的几个稳定构建模块。基于这些发现,我们提出了tUTP/UTP A和UTP B结构的优化模型。