Yonezawa Taishi, Takahashi Hirotaka, Shikata Shiori, Liu Xiaoxiao, Tamura Moe, Asada Shuhei, Fukushima Tsuyoshi, Fukuyama Tomofusa, Tanaka Yosuke, Sawasaki Tatsuya, Kitamura Toshio, Goyama Susumu
Division of Cellular Therapy, The Institute of Medical Science, The University of Tokyo, 4-6-1 Shirokanedai, Minato-ku, Tokyo 108-8639.
Proteo-Science Center (PROS), Ehime University, 3 Bunkyo-cho, Matsuyama, Ehime 790-8577, Japan.
J Biol Chem. 2017 Jul 28;292(30):12528-12541. doi: 10.1074/jbc.M117.785675. Epub 2017 May 23.
RUNX1 is a member of RUNX transcription factors and plays important roles in hematopoiesis. Disruption of RUNX1 activity has been implicated in the development of hematopoietic neoplasms. Chromosomal translocations involving the gene are associated with several types of leukemia, including acute myeloid leukemia driven by a leukemogenic fusion protein RUNX1-RUNX1T1. Previous studies have shown that RUNX1 is an unstable protein and is subjected to proteolytic degradation mediated by the ubiquitin-proteasome pathway. However, the precise mechanisms of RUNX1 ubiquitination have not been fully understood. Furthermore, much less is known about the mechanisms to regulate the stability of RUNX1-RUNX1T1. In this study, we identified several RUNX1-interacting E3 ubiquitin ligases using a novel high-throughput binding assay. Among them, we found that STUB1 bound to RUNX1 and induced its ubiquitination and degradation mainly in the nucleus. Immunofluorescence analyses revealed that the STUB1-induced ubiquitination also promoted nuclear export of RUNX1, which probably contributes to the reduced transcriptional activity of RUNX1 in STUB1-overexpressing cells. STUB1 also induced ubiquitination of RUNX1-RUNX1T1 and down-regulated its expression. Importantly, STUB1 overexpression showed a substantial growth-inhibitory effect in myeloid leukemia cells that harbor RUNX1-RUNX1T1, whereas it showed only a marginal effect in other non-RUNX1-RUNX1T1 leukemia cells and normal human cord blood cells. Taken together, these data suggest that the E3 ubiquitin ligase STUB1 is a negative regulator of both RUNX1 and RUNX1-RUNX1T1. Activation of STUB1 could be a promising therapeutic strategy for RUNX1-RUNX1T1 leukemia.
RUNX1是RUNX转录因子家族的成员,在造血过程中发挥重要作用。RUNX1活性的破坏与造血系统肿瘤的发生有关。涉及该基因的染色体易位与多种类型的白血病相关,包括由致白血病融合蛋白RUNX1-RUNX1T1驱动的急性髓系白血病。先前的研究表明,RUNX1是一种不稳定的蛋白质,会受到泛素-蛋白酶体途径介导的蛋白水解降解。然而,RUNX1泛素化的确切机制尚未完全阐明。此外,关于调节RUNX1-RUNX1T1稳定性的机制了解得更少。在本研究中,我们使用一种新型的高通量结合试验鉴定了几种与RUNX1相互作用的E3泛素连接酶。其中,我们发现STUB1与RUNX1结合,并主要在细胞核中诱导其泛素化和降解。免疫荧光分析显示,STUB1诱导的泛素化还促进了RUNX1的核输出,这可能导致在过表达STUB1的细胞中RUNX1的转录活性降低。STUB1还诱导RUNX1-RUNX1T1的泛素化并下调其表达。重要的是,STUB1过表达在携带RUNX1-RUNX1T1的髓系白血病细胞中显示出显著的生长抑制作用,而在其他非RUNX1-RUNX1T1白血病细胞和正常人脐带血细胞中仅显示出轻微作用。综上所述,这些数据表明E3泛素连接酶STUB1是RUNX1和RUNX1-RUNX1T1的负调节因子。激活STUB1可能是治疗RUNX1-RUNX1T1白血病的一种有前景的治疗策略。