Underhill D A, Vogan K J, Gros P
Department of Biochemistry, McGill University, Montreal, PQ, Canada.
Proc Natl Acad Sci U S A. 1995 Apr 25;92(9):3692-6. doi: 10.1073/pnas.92.9.3692.
The murine Pax-3 protein contains two DNA-binding domains, a paired domain and a homeodomain, and alterations in the Pax-3 gene are responsible for the neural tube defects observed in the Splotch (Sp) mouse mutant. Of five Sp alleles, Splotch-delayed (Spd) is the only one that encodes a full-length Pax-3 protein, containing a single glycine-to-arginine substitution within the paired domain. To better understand the consequence of this mutation on Pax-3 function, we have analyzed the DNA-binding properties of wild-type and Spd Pax-3, using oligonucleotides that bind primarily to the paired domain (e5) or exclusively to the homeodomain (P2). Wild-type Pax-3 was found to bind e5 in a specific manner. In contrast, the Spd mutation reduced binding of Pax-3 to e5 17-fold, revealing a defect in DNA binding by the paired domain. Surprisingly, the Spd mutation also drastically reduced the homeodomain-specific binding to P2 by 21-fold when compared with the wild-type protein. Interestingly, a deletion which removes the Spd mutation was found to restore P2-binding activity, suggesting that within the full-length Pax-3 protein, the paired domain and homeodomain may interact. We conclude, therefore, that the Spd mutation is phenotyically expressed in vitro by a defect in the DNA-binding properties of Pax-3. Furthermore, it is apparent that the paired domain and homeodomain of Pax-3 do not function as independent domains, since a mutation in the former impairs the DNA-binding activity of the latter.
小鼠Pax-3蛋白包含两个DNA结合结构域,即成对结构域和同源结构域,Pax-3基因的改变是导致斑点(Sp)小鼠突变体中观察到的神经管缺陷的原因。在五个Sp等位基因中,斑点延迟(Spd)是唯一编码全长Pax-3蛋白的等位基因,该蛋白在成对结构域内有一个甘氨酸到精氨酸的单一代替。为了更好地理解这种突变对Pax-3功能的影响,我们使用主要与成对结构域结合的寡核苷酸(e5)或专门与同源结构域结合的寡核苷酸(P2),分析了野生型和Spd Pax-3的DNA结合特性。发现野生型Pax-3以特定方式结合e5。相比之下,Spd突变使Pax-3与e5的结合减少了17倍,揭示了成对结构域在DNA结合方面的缺陷。令人惊讶的是,与野生型蛋白相比,Spd突变还使同源结构域与P2的特异性结合大幅减少了21倍。有趣的是,发现一个去除Spd突变的缺失恢复了P2结合活性,这表明在全长Pax-3蛋白中,成对结构域和同源结构域可能相互作用。因此,我们得出结论,Spd突变在体外通过Pax-3的DNA结合特性缺陷而表现出表型。此外,很明显Pax-3的成对结构域和同源结构域并非独立发挥作用,因为前者的突变会损害后者的DNA结合活性。