Lab. Oncología Molecular, Departamento de Química Biológica, IQUIBICEN-UBA/CONICET, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Buenos Aires, Argentina.
Laboratorio Nazionale del Consorzio Interuniversitario per le Biotecnologie, Area Science Park, Trieste, Italy.
Biochim Biophys Acta Mol Cell Res. 2021 Jun;1868(7):119015. doi: 10.1016/j.bbamcr.2021.119015. Epub 2021 Mar 17.
An essential requirement for cells to sustain a high proliferating rate is to be paired with enhanced protein synthesis through the production of ribosomes. For this reason, part of the growth-factor signaling pathways, are devoted to activate ribosome biogenesis. Enhanced production of ribosomes is a hallmark in cancer cells, which is boosted by different mechanisms. Here we report that the nucleolar tumor-protein MageB2, whose expression is associated with cell proliferation, also participates in ribosome biogenesis. Studies carried out in both siRNA-mediated MageB2 silenced cells and CRISPR/CAS9-mediated MageB2 knockout (KO) cells showed that its expression is linked to rRNA transcription increase independently of the cell proliferation status. Mechanistically, MageB2 interacts with phospho-UBF, a protein which causes the recruitment of RNA Pol I pre-initiation complex required for rRNA transcription. In addition, cells expressing MageB2 displays enhanced phospho-UBF occupancy at the rDNA gene promoter. Proteomic studies performed in MageB2 KO cells revealed impairment in ribosomal protein (RPs) content. Functionally, enhancement in rRNA production in MageB2 expressing cells, was directly associated with an increased dynamic in protein synthesis. Altogether our results unveil a novel function for a tumor-expressed protein from the MAGE-I family. Findings reported here suggest that nucleolar MageB2 might play a role in enhancing ribosome biogenesis as part of its repertoire to support cancer cell proliferation.
细胞维持高增殖率的一个基本要求是通过核糖体的产生来增强蛋白质合成。出于这个原因,部分生长因子信号通路致力于激活核糖体生物发生。核糖体的大量产生是癌细胞的一个标志,这是由不同的机制促进的。在这里,我们报告核仁肿瘤蛋白 MageB2 参与核糖体生物发生,其表达与细胞增殖相关。在 siRNA 介导的 MageB2 沉默细胞和 CRISPR/CAS9 介导的 MageB2 敲除 (KO) 细胞中进行的研究表明,其表达与 rRNA 转录的增加有关,而与细胞增殖状态无关。在机制上,MageB2 与磷酸化 UBF 相互作用,磷酸化 UBF 是一种引起 RNA Pol I 起始复合物募集的蛋白质,该复合物是 rRNA 转录所必需的。此外,表达 MageB2 的细胞显示出 rDNA 基因启动子处磷酸化 UBF 占据的增强。在 MageB2 KO 细胞中进行的蛋白质组学研究显示核糖体蛋白 (RPs) 含量受损。功能上,MageB2 表达细胞中 rRNA 产量的增加与蛋白质合成的动态增加直接相关。总之,我们的结果揭示了 MAGE-I 家族中一种肿瘤表达蛋白的新功能。这里报道的结果表明,核仁 MageB2 可能作为其支持癌细胞增殖的一部分,在增强核糖体生物发生中发挥作用。