Qiao Shiyao, Wang Wenmeng, Yi Cheng, Xu Qingqing, Wang Wenfei, Shi Jinming, Stovall Daniel B, Li Dangdang, Sui Guangchao
College of Life Science, Northeast Forestry University, Harbin 150040, China.
School of Life Science, Northeast Agriculture University, Harbin 150006, China.
Cancers (Basel). 2022 Mar 22;14(7):1611. doi: 10.3390/cancers14071611.
Yin Yang 1 (YY1) plays an oncogenic role through regulating the expression of various cancer-related genes and activating key oncoproteins. Previous research reported that YY1 protein formed dimers or oligomers without definite biological implications. In this study, we first demonstrated the oncoprotein binding (OPB) and zinc finger (ZF) domains of YY1 as the regions involved in its intermolecular interactions. ZFs are well-known for protein dimerization, so we focused on the OPB domain. After mutating three hydrophobic residues in the OPB to alanines, we discovered that YY1(F219A) and YY1(3A), three residues simultaneously replaced by alanines, were defective of intermolecular interaction. Meanwhile, the OPB peptide could robustly facilitate YY1 protein oligomerization. When expressed in breast cancer cells with concurrent endogenous YY1 knockdown, YY1(F219A) and (3A) mutants showed better capacity than wt in promoting cell proliferation and migration, while their interactions with EZH2, AKT and MDM2 showed differential alterations, especially with improved EZH2 binding affinity. Our study revealed a crucial role of the OPB domain in facilitating YY1 oligomerization and suggested a mutually exclusive regulation between YY1-mediated enhancer formation and its activities in promoting oncoproteins.
阴阳1(YY1)通过调节多种癌症相关基因的表达和激活关键癌蛋白发挥致癌作用。先前的研究报道YY1蛋白形成二聚体或寡聚体,但没有明确的生物学意义。在本研究中,我们首先证明了YY1的癌蛋白结合(OPB)结构域和锌指(ZF)结构域是其分子间相互作用的区域。ZF以蛋白质二聚化而闻名,所以我们重点研究了OPB结构域。将OPB中的三个疏水残基突变为丙氨酸后,我们发现YY1(F219A)和YY1(3A,三个残基同时被丙氨酸取代)存在分子间相互作用缺陷。同时,OPB肽能有力地促进YY1蛋白寡聚化。当在同时敲低内源性YY1的乳腺癌细胞中表达时,YY1(F219A)和(3A)突变体在促进细胞增殖和迁移方面表现出比野生型更好的能力,而它们与EZH2、AKT和MDM2的相互作用表现出不同的变化,尤其是与EZH2的结合亲和力提高。我们的研究揭示了OPB结构域在促进YY1寡聚化中的关键作用,并提示了YY1介导的增强子形成与其促进癌蛋白活性之间的相互排斥调节。