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Molecular Dynamics model of peptide-protein conjugation: case study of covalent complex between Sos1 peptide and N-terminal SH3 domain from Grb2

机译:肽 - 蛋白缀合的分子动力学模型:GRB2肽肽与N-末端SH3结构域的共价络合物的情况研究

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We have investigated covalent conjugation of VPPPVPPRRRX' peptide (where X' denotes Nsupε/sup-chloroacetyl lysine) to N-terminal SH3 domain from adapter protein Grb2. Our experimental results confirmed that the peptide first binds to the SH3 domain noncovalently before establishing a covalent linkage through reaction of X' with the target cysteine residue C32. We have also confirmed that this reaction involves a thiolate-anion form of C32 and follows the SsubN/sub2 mechanism. For this system, we have developed a new MD-based protocol to model the formation of covalent conjugate. The simulation starts with the known coordinates of the noncovalent complex. When two reactive groups come into contact during the course of the simulation, the reaction is initiated. The reaction is modeled via gradual interpolation between the two sets of force field parameters that are representative of the noncovalent and covalent complexes. The simulation proceeds smoothly, with no appreciable perturbations to temperature, pressure or volume, and results in a high-quality MD model of the covalent complex. The validity of this model is confirmed using the experimental chemical shift data. The new MD-based approach offers a valuable tool to explore the mechanics of protein-peptide conjugation and build accurate models of covalent complexes.
机译:我们研究了VPPPVPPRRRX'肽的共价缀合(其中X'表示来自适配器蛋白GRB2的N-末端SH3结构域的N ε -Chloro乙酰赖氨酸。我们的实验结果证实,在通过X'与靶半胱氨酸残基C32的反应建立共价连接之前,肽首先结合SH3结构域。我们还证实该反应涉及C32的硫醇酸酯 - 阴离子形式,并遵循S N 2机制。对于该系统,我们开发了一种基于MD的新的协议来模拟共价缀合物的形成。仿真从非共价复合物的已知坐标开始。当在模拟过程中两个反应性基团接触时,开始反应。通过代表非共价和共价复合物的两组力场参数之间通过逐渐插值模拟反应。模拟平稳地进行,没有明显的温度,压力或体积扰动,并导致共价复合物的高质量MD模型。使用实验化学换档数据确认该模型的有效性。基于MD的新方法提供了一种有价值的工具,可以探讨蛋白质肽缀合的机制,并建立准确的共价复合物模型。

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