Ogawa L M, Baserga S J
Department of Molecular Biophysics and Biochemistry, Yale University School of Medicine, New Haven, CT 06520, USA.
Mol Biosyst. 2017 Feb 28;13(3):443-455. doi: 10.1039/c6mb00740f.
Nucleolar function and the cellular response to DNA damage have long been studied as distinct disciplines. New research and a new appreciation for proteins holding multiple functional roles, however, is beginning to change the way we think about the crosstalk among distinct cellular processes. Here, we focus on the crosstalk between the DNA damage response and the nucleolus, including a comprehensive review of the literature that reveals a role for conventional DNA repair proteins in ribosome biogenesis, and conversely, ribosome biogenesis proteins in DNA repair. Furthermore, with recent advances in nucleolar proteomics and a growing list of proteins that localize to the nucleolus, it is likely that we will continue to identify new DNA repair proteins with a nucleolar-specific role. Given the importance of ribosome biogenesis and DNA repair in essential cellular processes and the role that they play in diverse pathologies, continued elucidation of the overlap between these two disciplines will be essential to the advancement of both fields and to the development of novel therapeutics.
长期以来,核仁功能与细胞对DNA损伤的反应一直作为不同的学科进行研究。然而,对于具有多种功能的蛋白质的新研究和新认识,正开始改变我们对不同细胞过程之间相互作用的看法。在这里,我们关注DNA损伤反应与核仁之间的相互作用,包括对文献的全面综述,这些文献揭示了传统DNA修复蛋白在核糖体生物合成中的作用,反之亦然,核糖体生物合成蛋白在DNA修复中的作用。此外,随着核仁蛋白质组学的最新进展以及定位于核仁的蛋白质列表不断增加,我们很可能会继续鉴定出具有核仁特异性作用的新DNA修复蛋白。鉴于核糖体生物合成和DNA修复在基本细胞过程中的重要性以及它们在多种病理中所起的作用,持续阐明这两个学科之间的重叠对于这两个领域的发展以及新型治疗方法的开发至关重要。