Zhang Lina, Li Zhe, Yan Jiangli, Pradhan Padmanava, Corpora Takeshi, Cheney Matthew D, Bravo Jerónimo, Warren Alan J, Bushweller John H, Speck Nancy A
Department of Biochemistry, Dartmouth Medical School, Hanover, New Hampshire 03755, USA.
J Biol Chem. 2003 Aug 29;278(35):33097-104. doi: 10.1074/jbc.M303972200. Epub 2003 Jun 13.
Core-binding factors (CBFs) are a small family of heterodimeric transcription factors that play critical roles in several developmental pathways and in human disease. Mutations in CBF genes are found in leukemias, bone disorders, and gastric cancers. CBFs consist of a DNA-binding CBF alpha subunit (Runx1, Runx2, or Runx3) and a non-DNA-binding CBF beta subunit. CBF alpha binds DNA in a sequence-specific manner, whereas CBF beta enhances DNA binding by CBF alpha. Both DNA binding and heterodimerization with CBF beta are mediated by a single domain in the CBF alpha subunits known as the "Runt domain." We analyzed the energetic contribution of amino acids in the Runx1 Runt domain to heterodimerization with CBF beta. We identified two energetic "hot spots" that were also found in a similar analysis of CBF beta (Tang, Y.-Y., Shi, J., Zhang, L., Davis, A., Bravo, J., Warren, A. J., Speck, N. A., and Bushweller, J. H. (2000) J. Biol. Chem. 275, 39579-39588). The importance of the hot spot residues for Runx1 function was demonstrated in in vivo transient transfection assays. These data refine the structural analyses and further our understanding of the Runx1-CBF beta interface.
核心结合因子(CBFs)是一个由异源二聚体转录因子组成的小家族,在多种发育途径和人类疾病中发挥关键作用。CBF基因的突变见于白血病、骨疾病和胃癌。CBFs由一个DNA结合性的CBFα亚基(Runx1、Runx2或Runx3)和一个非DNA结合性的CBFβ亚基组成。CBFα以序列特异性方式结合DNA,而CBFβ增强CBFα与DNA的结合。DNA结合以及与CBFβ的异源二聚化均由CBFα亚基中一个称为“Runt结构域”的单一结构域介导。我们分析了Runx1 Runt结构域中氨基酸对与CBFβ异源二聚化的能量贡献。我们鉴定出了两个能量“热点”,在对CBFβ的类似分析中也发现了它们(唐,Y.-Y.,施,J.,张,L.,戴维斯,A.,布拉沃,J.,沃伦,A. J.,斯佩克,N. A.,和布什韦勒,J. H.(2000年)《生物化学杂志》275,39579 - 39588)。体内瞬时转染试验证明了热点残基对Runx1功能的重要性。这些数据完善了结构分析,并进一步加深了我们对Runx1 - CBFβ界面的理解。