Gstaiger M, Georgiev O, van Leeuwen H, van der Vliet P, Schaffner W
Institute of Molecular Biology II, University of Zürich, Switzerland.
EMBO J. 1996 Jun 3;15(11):2781-90.
We have shown previously that both octamer binding transcription factors, namely the ubiquitous Oct-1 and the B cell-specific Oct-2A protein, can be enhanced in transcriptional activity by their association with the B cell-specific coactivator protein Bob1, also called OBF-1 or OCA-B. Here we study the structural requirements for ternary complex formation of DNA-Oct-Bob1 and coactivation function of Bob1. In analogy to DNA-bound transcription factors, Bob1 has a modular structure that includes an interaction domain (amino acids 1-65) and a C-terminal domain (amino acids 65-256), both important for transcriptional activation. A mutational analysis has resolved a region of seven amino acids (amino acids 26-32) in the N-terminus of Bob1 that are important for contacting the DNA binding POU domain of Oct-1 or Oct-2. In contrast to the viral coactivator VP16 (vmw65), which interacts with Oct-1 via the POU homeosubdomain, Bob1 association with Oct factors requires residues located in the POU-specific subdomain. Because the same residues are also involved in DNA recognition, we surmised that this association would affect the DNA binding specificity of the Oct-Bob1 complex compared with free Oct factors. While Oct-1 or Oct-2 bind to a large variety of octamer sequences, Bob1 ternary complex formation is indeed highly selective and occurs only in a subset of these sequences, leading to the differential coactivation of octamer-containing promoters. The results uncover a new level in selectivity that furthers our understanding in the regulation of cell type-specific gene expression.
我们之前已经表明,两种八聚体结合转录因子,即普遍存在的Oct-1和B细胞特异性的Oct-2A蛋白,通过与B细胞特异性共激活蛋白Bob1(也称为OBF-1或OCA-B)结合,其转录活性能够得到增强。在此,我们研究了DNA-Oct-Bob1三元复合物形成的结构要求以及Bob1的共激活功能。与DNA结合的转录因子类似,Bob1具有模块化结构,包括一个相互作用结构域(氨基酸1-65)和一个C端结构域(氨基酸65-256),这两个结构域对于转录激活都很重要。突变分析确定了Bob1 N端的一个七氨基酸区域(氨基酸26-32),该区域对于与Oct-1或Oct-2的DNA结合POU结构域接触很重要。与通过POU同源亚结构域与Oct-1相互作用的病毒共激活因子VP16(vmw65)不同,Bob1与Oct因子的结合需要位于POU特异性亚结构域的残基。由于相同的残基也参与DNA识别,我们推测这种结合与游离的Oct因子相比会影响Oct-Bob1复合物的DNA结合特异性。虽然Oct-1或Oct-2能与多种八聚体序列结合,但Bob1三元复合物的形成确实具有高度选择性,仅在这些序列的一个子集中发生,导致含八聚体启动子的差异共激活。这些结果揭示了一个新的选择性水平,进一步加深了我们对细胞类型特异性基因表达调控的理解。