Wittekind M, Mapelli C, Farmer B T, Suen K L, Goldfarb V, Tsao J, Lavoie T, Barbacid M, Meyers C A, Mueller L
Bristol-Myers Squibb Pharmaceutical Research Institute, Princeton, New Jersey 08543-4000.
Biochemistry. 1994 Nov 22;33(46):13531-9. doi: 10.1021/bi00250a004.
NMR spectroscopy has been used to characterize the protein-protein interactions between the mouse Grb2 (mGrb2) N-terminal SH3 domain complexed with a 15-residue peptide (SPLLPKLPP-KTYKRE) corresponding to residues 1264-1278 of the mouse Sos-2 (mSos-2) protein. Intermolecular interactions between the peptide and 13C-15N-labeled SH3 domain were identified in half-reverse-filtered 2D and 3D NOESY experiments. Assignments for the protons involved in interactions between the peptide and the SH3 domain were confirmed in a series of NOESY experiments using a set of peptides in which different leucine positions were fully deuterated. The peptide ligand-binding site of the mGrb2 N-terminal SH3 domain is defined by the side chains of specific aromatic residues (Tyr7, Phe9, Trp36, Tyr52) that form two hydrophobic subsites contacting the side chains of the peptide Leu4 and Leu7 residues. An adjacent negatively charged subsite on the SH3 surface is likely to interact with the side chain of a basic residue at peptide position 10 that we show to be involved in binding. The peptide-binding site of the SH3 is characterized by large perturbations of amide chemical shifts when the peptide is added to the SH3 domain. The mGrb2 N-terminal SH3 domain structure in the complex is well-defined (backbone RMSD of 0.56 +/- 0.21 calculated over the backbone N, C alpha, and C atoms of residues 1-54). The structure of the peptide in the complex is less well-defined but displays a distinct orientation.(ABSTRACT TRUNCATED AT 250 WORDS)
核磁共振光谱已被用于表征与对应于小鼠Sos-2(mSos-2)蛋白1264-1278位残基的15个残基肽(SPLLPKLPPKTYKRE)复合的小鼠Grb2(mGrb2)N端SH3结构域之间的蛋白质-蛋白质相互作用。在半反向滤波二维和三维NOESY实验中鉴定了肽与13C-15N标记的SH3结构域之间的分子间相互作用。在一系列NOESY实验中,使用一组不同亮氨酸位置完全氘代的肽,确认了参与肽与SH3结构域相互作用的质子的归属。mGrb2 N端SH3结构域的肽配体结合位点由特定芳香族残基(Tyr7、Phe9、Trp36、Tyr52)的侧链定义,这些残基形成两个疏水亚位点,与肽Leu4和Leu7残基的侧链接触。SH3表面相邻的带负电荷亚位点可能与肽第10位碱性残基的侧链相互作用,我们证明该残基参与结合。当肽添加到SH3结构域时,SH3的肽结合位点以酰胺化学位移的大幅扰动为特征。复合物中mGrb2 N端SH3结构域的结构明确(在1-54位残基的主链N、Cα和C原子上计算的主链RMSD为0.56±0.21)。复合物中肽的结构不太明确,但显示出独特的取向。(摘要截短于250字)