Experimental Therapeutics and Translational Oncology Program, Instituto de Biología Molecular y Celular del Cáncer, CSIC-Universidad de Salamanca, 37007, Salamanca, Spain.
Instituto de Investigación Biomédica de Salamanca (IBSAL), Hospital Universitario de Salamanca, 37007, Salamanca, Spain.
Cell Mol Life Sci. 2018 Jul;75(13):2375-2388. doi: 10.1007/s00018-018-2811-2. Epub 2018 Apr 20.
DNA damage causes a local distortion of chromatin that triggers the sequential processes that participate in specific DNA repair mechanisms. This initiation of the repair response requires the involvement of a protein whose activity can be regulated by histones. Kinases are candidates to regulate and coordinate the connection between a locally altered chromatin and the response initiating signals that lead to identification of the type of lesion and the sequential steps required in specific DNA damage responses (DDR). This initiating kinase must be located in chromatin, and be activated independently of the type of DNA damage. We review the contribution of the Ser-Thr vaccinia-related kinase 1 (VRK1) chromatin kinase as a new player in the signaling of DNA damage responses, at chromatin and cellular levels, and its potential as a new therapeutic target in oncology. VRK1 is involved in the regulation of histone modifications, such as histone phosphorylation and acetylation, and in the formation of γH2AX, NBS1 and 53BP1 foci induced in DDR. Induction of DNA damage by chemotherapy or radiation is a mainstay of cancer treatment. Therefore, novel treatments can be targeted to proteins implicated in the regulation of DDR, rather than by directly causing DNA damage.
DNA 损伤导致染色质局部扭曲,触发参与特定 DNA 修复机制的连续过程。修复反应的启动需要一种蛋白质的参与,其活性可以被组蛋白调节。激酶是调节和协调局部改变的染色质与引发信号之间连接的候选物质,这些信号导致识别损伤类型和特定 DNA 损伤反应(DDR)所需的连续步骤。这种起始激酶必须位于染色质中,并独立于 DNA 损伤的类型而被激活。我们回顾了 Ser-Thr 痘苗相关激酶 1(VRK1)染色质激酶作为染色质和细胞水平上 DNA 损伤反应信号转导的新参与者的贡献,以及其作为肿瘤学中新型治疗靶点的潜力。VRK1 参与组蛋白修饰的调节,如组蛋白磷酸化和乙酰化,以及 DDR 诱导的 γH2AX、NBS1 和 53BP1 焦点的形成。通过化疗或放疗诱导 DNA 损伤是癌症治疗的基础。因此,新型治疗方法可以针对涉及 DDR 调节的蛋白质,而不是直接造成 DNA 损伤。