The E3 ligase DTX2 inhibits RUNX1 function by binding its C terminus and prevents the growth of RUNX1‐dependent leukemia cells

运行x1 泛素连接酶 蛋白酶体 泛素 乙酰化 细胞生物学 转录因子 生物 化学 分子生物学 生物化学 造血 干细胞 基因
作者
Taishi Yonezawa,Hirotaka Takahashi,Yangying Hao,Chie Furukawa,Akiho Tsuchiya,Wenyu Zhang,Tsuyoshi Fukushima,Tomofusa Fukuyama,Tatsuya Sawasaki,Toshio Kitamura,Susumu Goyama
出处
期刊:FEBS Journal [Wiley]
卷期号:290 (21): 5141-5157 被引量:1
标识
DOI:10.1111/febs.16914
摘要

Transcription factor RUNX1 plays important roles in hematopoiesis and leukemogenesis. RUNX1 function is tightly controlled through posttranslational modifications, including ubiquitination and acetylation. However, its regulation via ubiquitination, especially proteasome-independent ubiquitination, is poorly understood. We previously identified DTX2 as a RUNX1-interacting E3 ligase using a cell-free AlphaScreen assay. In this study, we examined whether DTX2 is involved in the regulation of RUNX1 using in vitro and ex vivo analyses. DTX2 bound to RUNX1 and other RUNX family members RUNX2 and RUNX3 through their C-terminal region. DTX2-induced RUNX1 ubiquitination did not result in RUNX1 protein degradation. Instead, we found that the acetylation of RUNX1, which is known to enhance the transcriptional activity of RUNX1, was inhibited in the presence of DTX2. Concomitantly, DTX2 reduced the RUNX1-induced activation of an MCSFR luciferase reporter. We also found that DTX2 induced RUNX1 cytoplasmic mislocalization. Moreover, DTX2 overexpression showed a substantial growth-inhibitory effect in RUNX1-dependent leukemia cell lines. Thus, our findings indicate a novel aspect of the ubiquitination and acetylation of RUNX1 that is modulated by DTX2 in a proteosome-independent manner.
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