Chaney Beth A, Clark-Baldwin Kimber, Dave Vrushank, Ma Jun, Rance Mark
Department of Molecular Genetics, Biochemistry, and Microbiology, College of Medicine, University of Cincinnati, 231 Albert Sabin Way, Medical Sciences Building, Cincinnati, Ohio 45267-0524, USA.
Biochemistry. 2005 May 24;44(20):7497-511. doi: 10.1021/bi0473253.
We have determined the solution structure of a complex containing the K50 class homeodomain Pituitary homeobox protein 2 (PITX2) bound to its consensus DNA site (TAATCC). Previous studies have suggested that residue 50 is an important determinant of differential DNA-binding specificity among homeodomains. Although structures of several homeodomain-DNA complexes have been determined, this is the first structure of a native K50 class homeodomain. The only K50 homeodomain structure determined previously is an X-ray crystal structure of an altered specificity mutant, Engrailed Q50K (EnQ50K). Analysis of the NMR structure of the PITX2 homeodomain indicates that the lysine at position 50 makes contacts with two guanines on the antisense strand of the DNA, adjacent to the TAAT core DNA sequence, consistent with the structure of EnQ50K. Our evidence suggests that this side chain may make fluctuating interactions with the DNA, which is complementary to the crystal data for EnQ50K. There are differences in the tertiary structure between the native K50 structure and that of EnQ50K, which may explain differences in affinity and specificity between these proteins. Mutations in the human PITX2 gene are responsible for Rieger syndrome, an autosomal dominant disorder. Analysis of the residues mutated in Rieger syndrome indicates that many of these residues are involved in DNA binding, while others are involved in formation of the hydrophobic core of the protein. Overall, the role of K50 in homeodomain recognition is further clarified, and the results indicate that native K50 homeodomains may exhibit differences from altered specificity mutants.
我们已经确定了一种复合物的溶液结构,该复合物包含与共有DNA位点(TAATCC)结合的K50类同源结构域垂体同源盒蛋白2(PITX2)。先前的研究表明,第50位残基是同源结构域之间DNA结合特异性差异的重要决定因素。尽管已经确定了几种同源结构域-DNA复合物的结构,但这是天然K50类同源结构域的首个结构。之前确定的唯一K50同源结构域结构是特异性改变的突变体Engrailed Q50K(EnQ50K)的X射线晶体结构。对PITX2同源结构域的核磁共振结构分析表明,第50位的赖氨酸与DNA反义链上的两个鸟嘌呤接触,靠近TAAT核心DNA序列,这与EnQ50K的结构一致。我们的证据表明,该侧链可能与DNA进行动态相互作用,这与EnQ50K的晶体数据互补。天然K50结构与EnQ50K的三级结构存在差异,这可能解释了这些蛋白质在亲和力和特异性上的差异。人类PITX2基因的突变会导致里格尔综合征,这是一种常染色体显性疾病。对里格尔综合征中发生突变的残基分析表明,其中许多残基参与DNA结合,而其他残基则参与蛋白质疏水核心的形成。总体而言,K50在同源结构域识别中的作用得到了进一步阐明,结果表明天然K50同源结构域可能与特异性改变的突变体存在差异。