Bradshaw J M, Waksman G
Department of Biochemistry and Molecular Biophysics, Washington University School of Medicine, Saint Louis, Missouri 63110, USA.
Biochemistry. 1999 Apr 20;38(16):5147-54. doi: 10.1021/bi982974y.
SH2 domains are protein modules which interact with specific tyrosine phosphorylated sequences in target proteins. The SH2 domain of the Src kinase binds with high affinity to a tyrosine phosphorylated peptide containing the amino acids Glu, Glu, and Ile (EEI) at the positions +1, +2, and +3 C-terminal to the phosphotyrosine, respectively. To investigate the degree of selectivity of the Src SH2 domain for each amino acid of the EEI motif, the binding thermodynamics of a panel of substitutions at the +1 (Gln, Asp, Ala, Gly), +2 (Gln, Asp, Ala, Gly), and +3 (Leu, Val, Ala, Gly) positions were examined using titration microcalorimetry. It was revealed that the Src SH2 domain is insensitive (DeltaDeltaG degrees </= 0.6 kcal/mol) to conservative substitutions at all three peptide positions. However, mutation to Ala resulted in moderate reductions in DeltaG degrees, with the substitution at the +3 position showing the largest loss in affinity (DeltaDeltaG degrees = 1.4 kcal/mol), followed by the +2 (DeltaDeltaG degrees = 1.0 kcal/mol) and +1 (DeltaDeltaG degrees = 0.5 kcal/mol) positions. This hierarchy of binding was not reflected in the values of the heat capacity change, since only the peptide substituted to Ala at the +3 position showed a DeltaCp degrees that was reduced in magnitude compared to wild-type. To assess the degree of cooperation upon binding (or coupling) between the amino acids of the EEI sequence, the binding of a series of singly, doubly, and triply Ala substituted phosphopeptides was examined and analyzed using double mutant cycles. It was revealed that the effects of the Ala substitutions on DeltaG degrees were additive. However, nonadditive binding enthalpies were observed between the +1 Glu and +3 Ile, as well as the +2 Glu and +3 Ile, suggesting that communication occurs between residues of the EEI motif upon binding.
SH2结构域是与靶蛋白中特定酪氨酸磷酸化序列相互作用的蛋白质模块。Src激酶的SH2结构域与一个酪氨酸磷酸化肽段高亲和力结合,该肽段在磷酸酪氨酸的C末端+1、+2和+3位分别含有氨基酸Glu、Glu和Ile(EEI)。为了研究Src SH2结构域对EEI基序中每个氨基酸的选择性程度,使用滴定微量热法检测了在+1位(Gln、Asp、Ala、Gly)、+2位(Gln、Asp、Ala、Gly)和+3位(Leu、Val、Ala、Gly)的一组取代突变体的结合热力学。结果显示,Src SH2结构域对所有三个肽段位置的保守取代不敏感(ΔΔG°≤0.6 kcal/mol)。然而,突变为Ala会导致ΔG°适度降低,其中+3位的取代显示亲和力损失最大(ΔΔG° = 1.4 kcal/mol),其次是+2位(ΔΔG° = 1.0 kcal/mol)和+1位(ΔΔG° = 0.5 kcal/mol)。这种结合层次在热容变化值中未得到体现,因为只有在+3位被取代为Ala的肽段显示出与野生型相比ΔCp°的幅度降低。为了评估EEI序列氨基酸之间结合(或偶联)时的协同程度,使用双突变循环检测并分析了一系列单、双和三Ala取代的磷酸肽的结合情况。结果显示,Ala取代对ΔG°的影响是累加的。然而,在+1位的Glu和+3位的Ile之间以及+2位的Glu和+3位的Ile之间观察到非累加的结合焓,这表明在结合时EEI基序的残基之间存在相互作用。