首页> 外文期刊>Journal of Molecular Biology >Solution structure of the yeast Rad53 FHA2 complexed with a phosphothreonine peptide pTXXL: Comparison with the structures of FHA2-pYXL and FHA1-pTXXD complexes
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Solution structure of the yeast Rad53 FHA2 complexed with a phosphothreonine peptide pTXXL: Comparison with the structures of FHA2-pYXL and FHA1-pTXXD complexes

机译:与磷酸苏氨酸肽pTXXL复合的酵母Rad53 FHA2的溶液结构:与FHA2-pYXL和FHA1-pTXXD复合物的结构比较

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摘要

It was proposed previously that the FHA2 domain of the yeast protein kinase Rad53 has dual specificity toward pY and pT peptides. The consensus sequences of pY peptides for binding to FHA2, as well as the solution structures of free FHA2 and FHA2 complex with a pY peptide derived from Rad9, have been obtained previously. We now report the use of a pT library to screen for binding of pT peptides with the FHA2 domain. The results show that FHA2 binds favorably to pT peptides with Ile at the +3 position. We then searched the Rad9 sequences with a pTXXI/L motif, and tested the binding affinity of FHA2 toward ten pT peptides derived from Rad9. One of the peptides, (EVEL)-E-599(pT)QELP(607), displayed the best binding affinity (K-d = 12.9 muM) and the greatest chemical shift changes. The structure of the FHA2 complex with this peptide was then determined by solution NMR and the structure of the complex between FHA2 and the pY peptide (EDI)-E-826(pY)YLD832 was further refined. Structural comparison of these two complexes indicates that the Leu. residue at the +3 position in the pT peptide and that at the +2 position in the pY peptide occupy a very similar position relative to the binding site residues from FHA2. This can explain why FHA2 is able to bind both pT and pY peptides. This position change from +3 to +2 could be the consequence of the size difference between Thr and Tyr. Further insight into the structural basis of ligand specificity of FHA domains was obtained by comparing the structures of the FHA2-pTXXL complex obtained in this work and the FHA1-pTXXD complex reported in the accompanying paper.
机译:先前已经提出,酵母蛋白激酶Rad53的FHA2结构域对pY和pT肽具有双重特异性。先前已获得了与FHA2结合的pY肽的共有序列,以及游离FHA2和FHA2与Rad9衍生的pY肽的复合物的溶液结构。我们现在报告使用pT库来筛选pT肽与FHA2结构域的结合。结果表明,FHA2与+ T位置带有Ile的pT肽良好结合。然后,我们用pTXXI / L基序搜索了Rad9序列,并测试了FHA2对源自Rad9的十个pT肽的结合亲和力。其中一种肽(EVEL)-E-599(pT)QELP(607)显示出最佳的结合亲和力(K-d = 12.9 muM)和最大的化学位移变化。然后通过溶液NMR确定具有该肽的FHA2复合物的结构,并进一步精制FHA2与pY肽(EDI)-E-826(pY)YLD832之间的复合物的结构。这两个复合物的结构比较表明亮氨酸。相对于FHA2的结合位点残基,pT肽中+3位的残基和pY肽中+2位的残基占据非常相似的位置。这可以解释为什么FHA2能够结合pT和pY肽。从+3到+2的位置变化可能是Thr和Tyr之间大小差异的结果。通过比较这项工作中获得的FHA2-pTXXL复合物的结构和随附论文中报道的FHA1-pTXXD复合物的结构,可以进一步了解FHA结构域的配体特异性的结构基础。

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