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Quantifying Intramolecular Binding in Multivalent Interactions: A Structure-Based Synergistic Study on Grb2-Sos1 Complex

机译:定量多价相互作用中的分子内结合:Grb2-Sos1复杂的基于结构的协同研究。

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摘要

Numerous signaling proteins use multivalent binding to increase the specificity and affinity of their interactions within the cell. Enhancement arises because the effective binding constant for multivalent binding is larger than the binding constants for each individual interaction. We seek to gain both qualitative and quantitative understanding of the multivalent interactions of an adaptor protein, growth factor receptor bound protein-2 (Grb2), containing two SH3 domains interacting with the nucleotide exchange factor son-of-sevenless 1 (Sos1) containing multiple polyproline motifs separated by flexible unstructured regions. Grb2 mediates the recruitment of Sos1 from the cytosol to the plasma membrane where it activates Ras by inducing the exchange of GDP for GTP. First, using a combination of evolutionary information and binding energy calculations, we predict an additional polyproline motif in Sos1 that binds to the SH3 domains of Grb2. This gives rise to a total of five polyproline motifs in Sos1 that are capable of binding to the two SH3 domains of Grb2. Then, using a hybrid method combining molecular dynamics simulations and polymer models, we estimate the enhancement in local concentration of a polyproline motif on Sos1 near an unbound SH3 domain of Grb2 when its other SH3 domain is bound to a different polyproline motif on Sos1. We show that the local concentration of the Sos1 motifs that a Grb2 SH3 domain experiences is approximately 1000 times greater than the cellular concentration of Sos1. Finally, we calculate the intramolecular equilibrium constants for the crosslinking of Grb2 on Sos1 and use thermodynamic modeling to calculate the stoichiometry. With these equilibrium constants, we are able to predict the distribution of complexes that form at physiological concentrations. We believe this is the first systematic analysis that combines sequence, structure, and thermodynamic analyses to determine the stoichiometry of the complexes that are dominant in the cellular environment.
机译:许多信号蛋白使用多价结合来增加它们在细胞内相互作用的特异性和亲和力。产生增强是因为多价结合的有效结合常数大于每个单独相互作用的结合常数。我们寻求获得定性和定量的衔接子蛋白,生长因子受体结合蛋白2(Grb2),包含两个SH3域与核苷酸交换因子-seven-of-sevenless 1(Sos1)相互作用的多价相互作用的多价相互作用,多聚脯氨酸基序被柔性非结构化区域隔开。 Grb2介导了Sos1从细胞质到质膜的募集,并通过诱导GDP交换GTP来激活Ras。首先,结合使用进化信息和结合能计算,我们预测Sos1中的另一个多脯氨酸基序与Grb2的SH3域结合。这在Sos1中产生了总共五个能够与Grb2的两个SH3域结合的多脯氨酸基序。然后,使用结合分子动力学模拟和聚合物模型的混合方法,当Grb2的另一个SH3结构域与Sos1上的另一个脯氨酸基序结合时,我们估计Sos1附近的脯氨酸基上的脯氨酸基序的浓度增加。我们显示,Grb2 SH3域经历的Sos1图案的局部浓度大约比Sos1的细胞浓度大1000倍。最后,我们计算了Sob1上Grb2交联的分子内平衡常数,并使用热力学模型计算了化学计量。利用这些平衡常数,我们能够预测在生理浓度下形成的复合物的分布。我们相信这是第一个结合序列,结构和热力学分析来确定在细胞环境中占主导地位的复合物的化学计量的系统分析。

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