Yongkiettrakul Suganya, Byeon In-Ja L, Tsai Ming-Daw
Ohio State Biochemistry Program, The Ohio State University, Columbus, Ohio 43210, USA.
Biochemistry. 2004 Apr 6;43(13):3862-9. doi: 10.1021/bi036195f.
On the basis of the results from our laboratory and others, we recently suggested that the ligand specificity of forkhead-associated (FHA) domains is controlled by variations in three major factors: (i) residues interacting with pThr, (ii) residues recognizing the +1 to +3 residues from pThr, and (iii) an extended binding surface. While the first factor has been well established by several solution and crystal structures of FHA-phosphopeptide complexes, the structural bases of the second and third factors are not well understood and are likely to vary greatly between different FHA domains. In this work, we proposed and tested the hypothesis that nonconserved residues G133 and G135 of FHA1 and I681 and D683 of FHA2, located outside of the core FHA region of yeast Rad53 FHA domains, contribute to the specific recognition of the +3 position of different phosphopeptides. By rational mutagenesis of these residues, the specificity of FHA1 has been changed from predominantly pTXXD to be equally acceptable for pTXXD, pTXXL, and pYXL, which are similar to the specificities of the FHA2 domain of Rad53. Conversely, the +3 position specificity of FHA2 has been engineered to be more like FHA1 with the I681A mutation. These results were based on library screening as well as binding analyses of specific phosphopeptides. Furthermore, results of structural analyses by NMR indicate that some of these residues are also important for the structural integrity of the loops.
基于我们实验室及其他实验室的研究结果,我们最近提出,叉头相关(FHA)结构域的配体特异性受三个主要因素的变化控制:(i)与磷酸苏氨酸(pThr)相互作用的残基;(ii)识别pThr下游第 +1至 +3位残基的残基;(iii)扩展的结合表面。虽然第一个因素已通过FHA - 磷酸肽复合物的多个溶液和晶体结构得到充分证实,但第二和第三个因素的结构基础尚不清楚,并且在不同的FHA结构域之间可能有很大差异。在这项工作中,我们提出并验证了一个假设,即酵母Rad53 FHA结构域核心FHA区域之外的FHA1的非保守残基G133和G135以及FHA2的I681和D683有助于对不同磷酸肽 +3位的特异性识别。通过对这些残基进行合理诱变,FHA1的特异性已从主要识别pTXXD转变为对pTXXD、pTXXL和pYXL同样接受,这与Rad53的FHA2结构域的特异性相似。相反,通过I681A突变,FHA2的 +3位特异性已被设计得更像FHA1。这些结果基于文库筛选以及特定磷酸肽的结合分析。此外,核磁共振(NMR)结构分析结果表明,其中一些残基对于环的结构完整性也很重要。