Hollenbeck J J, Gurnon D G, Fazio G C, Carlson J J, Oakley M G
Department of Chemistry, Indiana University, Bloomington, Indiana 47405, USA.
Biochemistry. 2001 Nov 20;40(46):13833-9. doi: 10.1021/bi011088b.
Basic-region leucine zipper (bZip) proteins contain a bipartite DNA-binding motif consisting of a leucine zipper dimerization domain and a basic region that directly contacts DNA. In all naturally occurring bZip proteins, the basic region is positioned N-terminal to the leucine zipper. We have designed a series of model bZip peptides in which the basic region of the yeast transcriptional activator GCN4 is placed C-terminal to its leucine zipper. DNA-binding studies demonstrate that the optimal reverse GCN4 (rGCN4) peptide is able to bind specifically and with wild-type affinity to DNA despite this unnatural arrangement of the two subdomains. These results suggest that a thermodynamic basis for the observed N-terminal positioning of the basic region relative to the dimerization domain is unlikely.
碱性区域亮氨酸拉链(bZip)蛋白包含一个由亮氨酸拉链二聚化结构域和直接与DNA接触的碱性区域组成的双功能DNA结合基序。在所有天然存在的bZip蛋白中,碱性区域位于亮氨酸拉链的N端。我们设计了一系列模型bZip肽,其中酵母转录激活因子GCN4的碱性区域位于其亮氨酸拉链的C端。DNA结合研究表明,尽管两个亚结构域的这种非自然排列,最佳反向GCN4(rGCN4)肽仍能够以野生型亲和力特异性结合DNA。这些结果表明,碱性区域相对于二聚化结构域观察到的N端定位不太可能存在热力学基础。