Peltenburg L T, Murre C
Department of Biology, University of California, San Diego, La Jolla 92093, USA.
Development. 1997 Mar;124(5):1089-98. doi: 10.1242/dev.124.5.1089.
Two classes of homeodomain proteins, Hox and Engrailed, have been shown to act in concert with the atypical homeodomain proteins Pbx and extradenticle. We now show that specific residues located within the Pbx homeodomain are essential for cooperative DNA binding with Hox and Engrailed gene products. Within the N-terminal region of the Pbx homeodomain, we have identified a residue that is required for cooperative DNA binding with three Hox gene products but not for cooperativity with Engrailed-2 (En-2). Furthermore, there are similarities between heterodimeric interactions involving the yeast mating type proteins MATa1 and MATalpha2 and those that allow the formation of Pbx/Hox and Pbx/En-2 heterodimers. Specifically, residues located in the a1 homeodomain that were previously shown to form a hydrophobic pocket allowing the alpha2 C-terminal tail to bind, are also required for Pbx/Hox and Pbx/En-2 cooperativity. Furthermore, we show that three residues located in the turn between helix 1 and helix 2, characteristic of many atypical homeodomain proteins, are required for cooperative DNA binding involving both Hox and En-2. Replacement of the three residues located in the turn between helix 1 and helix 2 of the Pbx homeodomain with those of the atypical homeodomain proteins controlling cell fate in the basidiomycete Ustilago maydis, bE5 and bE6, allows cooperative DNA binding with three Hox members but abolishes interactions with En-2. The data suggest that the molecular mechanism of homeodomain protein interactions that control cell fate in Saccharomyces cerevisiae and in the basidiomycetes may well be conserved in part in multicellular organisms.
两类同源异型结构域蛋白,即Hox和Engrailed,已被证明可与非典型同源异型结构域蛋白Pbx和额外牙本质协同作用。我们现在表明,Pbx同源异型结构域内的特定残基对于与Hox和Engrailed基因产物的协同DNA结合至关重要。在Pbx同源异型结构域的N端区域,我们鉴定出一个残基,它是与三种Hox基因产物协同DNA结合所必需的,但与Engrailed-2(En-2)的协同作用并非必需。此外,涉及酵母交配型蛋白MATa1和MATalpha2的异二聚体相互作用与允许形成Pbx/Hox和Pbx/En-2异二聚体的相互作用之间存在相似性。具体而言,先前显示位于a1同源异型结构域中形成疏水口袋以允许alpha2 C末端尾巴结合的残基,对于Pbx/Hox和Pbx/En-2的协同作用也是必需的。此外,我们表明,许多非典型同源异型结构域蛋白特有的位于螺旋1和螺旋2之间转角处的三个残基,对于涉及Hox和En-2的协同DNA结合是必需的。用担子菌Ustilago maydis中控制细胞命运的非典型同源异型结构域蛋白bE5和bE6的残基取代Pbx同源异型结构域中位于螺旋1和螺旋2之间转角处的三个残基,可允许与三个Hox成员协同DNA结合,但消除与En-2的相互作用。数据表明,酿酒酵母和担子菌中控制细胞命运的同源异型结构域蛋白相互作用的分子机制在多细胞生物中可能部分保守。