Institute for Biochemistry, Westfälische-Wilhelms-Universität, D-48149, Münster, Germany.
Sci Rep. 2020 May 21;10(1):8390. doi: 10.1038/s41598-020-65443-w.
B-MYB, a highly conserved member of the MYB transcription factor family, is expressed ubiquitously in proliferating cells and plays key roles in important cell cycle-related processes, such as control of G2/M-phase transcription, cytokinesis, G1/S-phase progression and DNA-damage reponse. Deregulation of B-MYB function is characteristic of several types of tumor cells, underlining its oncogenic potential. To gain a better understanding of the functions of B-MYB we have employed affinity purification coupled to mass spectrometry to discover novel B-MYB interacting proteins. Here we have identified the zinc-finger proteins ZMYM2 and ZMYM4 as novel B-MYB binding proteins. ZMYM4 is a poorly studied protein whose initial characterization reported here shows that it is highly SUMOylated and that its interaction with B-MYB is stimulated upon induction of DNA damage. Unlike knockdown of B-MYB, which causes G2/M arrest and defective cytokinesis in HEK293 cells, knockdown of ZMYM2 or ZMYM4 have no obvious effects on the cell cycle of these cells. By contrast, knockdown of ZMYM2 strongly impaired the G1/S-phase progression of HepG2 cells, suggesting that ZMYM2, like B-MYB, is required for entry into S-phase in these cells. Overall, our work identifies two novel B-MYB binding partners with possible functions in the DNA-damage response and the G1/S-transition.
B-MYB 是 MYB 转录因子家族中高度保守的成员,在增殖细胞中广泛表达,在重要的细胞周期相关过程中发挥关键作用,如控制 G2/M 期转录、胞质分裂、G1/S 期进展和 DNA 损伤反应。B-MYB 功能失调是几种类型肿瘤细胞的特征,突出了其致癌潜能。为了更好地了解 B-MYB 的功能,我们采用亲和纯化结合质谱法来发现新的 B-MYB 相互作用蛋白。在这里,我们鉴定了锌指蛋白 ZMYM2 和 ZMYM4 为新的 B-MYB 结合蛋白。ZMYM4 是一种研究较少的蛋白质,我们对其进行了初步表征,结果表明它高度 SUMO 化,并且其与 B-MYB 的相互作用在诱导 DNA 损伤时受到刺激。与 B-MYB 敲低导致 HEK293 细胞 G2/M 期阻滞和胞质分裂缺陷不同,ZMYM2 或 ZMYM4 的敲低对这些细胞的细胞周期没有明显影响。相比之下,ZMYM2 的敲低强烈抑制 HepG2 细胞的 G1/S 期进展,表明 ZMYM2 与 B-MYB 一样,是这些细胞进入 S 期所必需的。总的来说,我们的工作鉴定了两个新的 B-MYB 结合伙伴,它们可能在 DNA 损伤反应和 G1/S 转换中具有功能。