Pizzul Paolo, Casari Erika, Gnugnoli Marco, Rinaldi Carlo, Corallo Flavio, Longhese Maria Pia
Dipartimento di Biotecnologie e Bioscienze, Università degli Studi di Milano-Bicocca, Milano, Italy.
Front Genet. 2022 Sep 15;13:995163. doi: 10.3389/fgene.2022.995163. eCollection 2022.
Studies performed in the yeasts and have led the way in defining the DNA damage checkpoint and in identifying most of the proteins involved in this regulatory network, which turned out to have structural and functional equivalents in humans. Subsequent experiments revealed that the checkpoint is an elaborate signal transduction pathway that has the ability to sense and signal the presence of damaged DNA and transduce this information to influence a multifaceted cellular response that is essential for cancer avoidance. This review focuses on the work that was done in to articulate the checkpoint concept, to identify its players and the mechanisms of activation and deactivation.
在酵母中进行的研究引领了定义DNA损伤检查点以及识别该调控网络中大多数相关蛋白质的道路,结果发现这些蛋白质在人类中具有结构和功能上的对应物。随后的实验表明,该检查点是一条精心构建的信号转导通路,能够感知并发出受损DNA存在的信号,并将此信息传递出去,以影响多方面的细胞反应,而这种反应对于预防癌症至关重要。本综述聚焦于在阐明检查点概念、识别其参与者以及激活和失活机制方面所开展的工作。