Division of Immunology and Infectious Disease, The John Curtin School of Medical Research, The Australian National University, Canberra, Australia.
Conjoint Gastroenterology Laboratory, QIMR Berghofer Medical Research Institute, Herston, Australia.
Sci Adv. 2024 Jan 26;10(4):eadh3409. doi: 10.1126/sciadv.adh3409.
The innate immune response contributes to the development or attenuation of acute and chronic diseases, including cancer. Microbial DNA and mislocalized DNA from damaged host cells can activate different host responses that shape disease outcomes. Here, we show that mice and humans lacking a single allele of the DNA repair protein Ku70 had increased susceptibility to the development of intestinal cancer. Mechanistically, Ku70 translocates from the nucleus into the cytoplasm where it binds to cytosolic DNA and interacts with the GTPase Ras and the kinase Raf, forming a tripartite protein complex and docking at Rab5Rab7 early-late endosomes. This Ku70-Ras-Raf signalosome activates the MEK-ERK pathways, leading to impaired activation of cell cycle proteins Cdc25A and CDK1, reducing cell proliferation and tumorigenesis. We also identified the domains of Ku70, Ras, and Raf involved in activating the Ku70 signaling pathway. Therapeutics targeting components of the Ku70 signalosome could improve the treatment outcomes in cancer.
先天免疫反应有助于急性和慢性疾病(包括癌症)的发展或减轻。微生物 DNA 和受损宿主细胞中的错位 DNA 可以激活不同的宿主反应,从而影响疾病结局。在这里,我们表明,缺乏 DNA 修复蛋白 Ku70 单个等位基因的小鼠和人类更容易患上肠道癌症。从机制上讲,Ku70 从细胞核易位到细胞质,在细胞质中与细胞质 DNA 结合,并与 GTP 酶 Ras 和激酶 Raf 相互作用,形成一个三组分蛋白复合物,并停靠在 Rab5Rab7 早期晚期内体上。这种 Ku70-Ras-Raf 信号体激活 MEK-ERK 途径,导致细胞周期蛋白 Cdc25A 和 CDK1 的激活受损,从而减少细胞增殖和肿瘤发生。我们还确定了 Ku70、Ras 和 Raf 的参与激活 Ku70 信号通路的结构域。针对 Ku70 信号体成分的治疗方法可以改善癌症的治疗效果。