Lu Q, Kamps M P
Department of Pathology, School of Medicine, University of California, San Diego, La Jolla 92093, USA.
Mol Cell Biol. 1996 Apr;16(4):1632-40. doi: 10.1128/MCB.16.4.1632.
Genetic studies have identified a family of divergent homeodomain proteins, including the human protooncoprotein Pbx1 and its drosophila homolog extradenticle (Exd), which function as cofactors with a subset of Hox and HOM-C proteins, and are essential for specific target gene expression. Pbx1/Exd binds DNA elements cooperatively with a large subset of Hox/HOM-C proteins containing a conserved pentapeptide motif, usually YPWMR, located just N terminally to their homeodomains. The pentapeptide is essential for cooperative DNA binding with Pbx1. In this study, we identify structural determinants of Pbx1 that are required for cooperative DNA binding with the pentapeptide-containing Hox protein HoxA5. We demonstrate that the homeodomain of Pbx1 contains a surface that binds the pentapeptide motif and that the Pbx1 homeodomain is sufficient for cooperative DNA binding with a Hox protein. A sequence immediately C terminal to the Pbx1 homeodomain, which is highly conserved in Pbx2 and Pbx3 and predicted to form an alpha-helix, enhances monomeric DNA binding by Pbx1 and also contributes to maximal cooperativity with Hox proteins. Binding studies with chimeric HoxA5-Pbx1 fusion proteins suggest that the homeodomains of Pbx1 and HoxA5 are docked on the representative element, TTGATTGAT, in tandem, with Pbx1 recognizing the 5' TTGAT core motif and the Hox protein recognizing the 3' TGAT core. The proposed binding orientation permits Hox proteins to exhibit further binding specificity on the basis of the identity of the four residues 3' to their core binding motif.
遗传学研究已经鉴定出一类不同的同源异型结构域蛋白家族,包括人类原癌蛋白Pbx1及其果蝇同源物额外齿状蛋白(Exd),它们作为Hox和HOM - C蛋白亚群的辅因子发挥作用,并且对于特定靶基因的表达至关重要。Pbx1/Exd与一大类含有保守五肽基序(通常为YPWMR,位于其同源异型结构域N端)的Hox/HOM - C蛋白协同结合DNA元件。该五肽对于与Pbx1协同结合DNA至关重要。在本研究中,我们确定了Pbx1与含五肽的Hox蛋白HoxA5协同结合DNA所需的结构决定因素。我们证明Pbx1的同源异型结构域包含一个结合五肽基序的表面,并且Pbx1同源异型结构域足以与Hox蛋白协同结合DNA。Pbx1同源异型结构域紧邻的C端序列,在Pbx2和Pbx3中高度保守且预测会形成α螺旋,增强了Pbx1的单体DNA结合能力,也有助于与Hox蛋白的最大协同性。对嵌合HoxA5 - Pbx1融合蛋白的结合研究表明,Pbx1和HoxA5的同源异型结构域串联停靠在代表性元件TTGATTGAT上,Pbx1识别5'TTGAT核心基序,Hox蛋白识别3'TGAT核心。所提出的结合方向允许Hox蛋白根据其核心结合基序3'端四个残基的一致性表现出进一步的结合特异性。