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The Nuclear Export Receptors TbMex67 and TbMtr2 Are Required for Ribosome Biogenesis in Trypanosoma brucei

机译:布鲁氏锥虫核糖体生物发生需要核出口受体TbMex67和TbMtr2。

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Ribosomal maturation is a complex and highly conserved biological process involving migration of a continuously changing RNP across multiple cellular compartments. A critical point in this process is the translocation of individual ribosomal subunits (60S and 40S) from the nucleus to the cytoplasm, and a number of export factors participate in this process. In this study, we characterize the functional role of the auxiliary export receptors TbMex67 and TbMtr2 in ribosome biogenesis in the parasite Trypanosoma brucei . We demonstrate that depletion of each of these proteins dramatically impacts the steady-state levels of other proteins involved in ribosome biogenesis, including the trypanosome-specific factors P34 and P37. In addition, we observe that the loss of TbMex67 or TbMtr2 leads to aberrant ribosome formation, rRNA processing, and polysome formation. Although the TbMex67-TbMtr2 heterodimer is structurally distinct from Mex67-Mtr2 complexes previously studied, our data show that they retain a conserved function in ribosome biogenesis. IMPORTANCE The nuclear export of ribosomal subunits (60S and 40S) depends in part on the activity of the essential auxiliary export receptors TbMtr2 and TbMex67. When these proteins are individually depleted from the medically and agriculturally significant parasite Trypanosoma brucei , distinct alterations in the processing of the rRNAs of the large subunit (60S) are observed as well as aberrations in the assembly of functional ribosomes (polysomes). We also established that TbMex67 and TbMtr2 interact directly or indirectly with the protein components of the 5S RNP, including the trypanosome-specific P34/P37. The critical role that TbMex67 and TbMtr2 play in this essential biological process together with their parasite-specific interactions may provide new therapeutic targets against this important parasite.
机译:核糖体成熟是一个复杂且高度保守的生物学过程,涉及不断变化的RNP跨多个细胞区室的迁移。该过程中的关键点是单个核糖体亚基(60S和40S)从细胞核到细胞质的易位,许多输出因子参与该过程。在这项研究中,我们表征了辅助出口受体TbMex67和TbMtr2在寄生虫布鲁氏菌的核糖体生物发生中的功能作用。我们证明每种蛋白质的消耗会显着影响参与核糖体生物发生的其他蛋白质的稳态水平,包括锥虫特异性因子P34和P37。此外,我们观察到TbMex67或TbMtr2的丢失会导致异常的核糖体形成,rRNA加工和多核糖体形成。尽管TbMex67-TbMtr2异二聚体在结构上不同于先前研究的Mex67-Mtr2复合体,但我们的数据显示它们在核糖体生物发生中保留了保守的功能。重要信息核糖体亚基(60S和40S)的核输出部分取决于必需的辅助输出受体TbMtr2和TbMex67的活性。当这些蛋白质分别从医学和农业上重要的寄生虫布鲁氏锥虫中耗尽时,会观察到大亚基(60S)rRNA加工过程中的明显变化,以及功能性核糖体(多核糖体)组装中的异常。我们还确定,TbMex67和TbMtr2与5S RNP的蛋白质成分直接或间接相互作用,包括锥虫特异性P34 / P37。 TbMex67和TbMtr2在此必不可少的生物学过程中发挥的关键作用及其寄生虫特异性相互作用可能会提供针对这种重要寄生虫的新治疗靶标。

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