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Realistic protein-protein association rates from a simple diffusional model neglecting long-range interactions, free energy barriers, and landscape ruggedness.

机译:忽略远距离相互作用,自由能垒和景观坚固性的简单扩散模型得出的现实蛋白质-蛋白质缔合速率。

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We develop a simple but rigorous model of protein-protein association kinetics based on diffusional association on free energy landscapes obtained by sampling configurations within and surrounding the native complex binding funnels. Guided by results obtained on exactly solvable model problems, we transform the problem of diffusion in a potential into free diffusion in the presence of an absorbing zone spanning the entrance to the binding funnel. The free diffusion problem is solved using a recently derived analytic expression for the rate of association of asymmetrically oriented molecules. Despite the required high steric specificity and the absence of long-range attractive interactions, the computed rates are typically on the order of 10(4)-10(6) M(-1) sec(-1), several orders of magnitude higher than rates obtained using a purely probabilistic model in which the association rate for free diffusion of uniformly reactive molecules is multiplied by the probability of a correct alignment of the two partners in a random collision. As the association rates of many protein-protein complexes are also in the 10(5)-10(6) M(-1) sec(-1) range, our results suggest that free energy barriers arising from desolvation and/or side-chain freezing during complex formation or increased ruggedness within the binding funnel, which are completely neglected in our simple diffusional model, do not contribute significantly to the dynamics of protein-protein association. The transparent physical interpretation of our approach that computes association rates directly from the size and geometry of protein-protein binding funnels makes it a useful complement to Brownian dynamics simulations.
机译:我们建立了一个简单但严格的蛋白质-蛋白质缔合动力学模型,该模型基于通过对天然复合物结合漏斗内部和周围的采样配置获取的自由能景观上的扩散缔合而建立。以在完全可解决的模型问题上获得的结果为指导,在存在跨越结合漏斗入口的吸收区的情况下,我们将势能扩散问题转换为自由扩散。使用最近获得的不对称取向分子缔合速率的解析表达式可以解决自由扩散问题。尽管需要很高的空间特异性,并且没有长距离的吸引力相互作用,但计算的速率通常约为10(4)-10(6)M(-1)sec(-1),高出几个数量级与使用纯概率模型获得的速率相比,在纯概率模型中,均匀反应性分子的自由扩散的缔合速率乘以随机碰撞中两个伙伴正确对齐的概率。由于许多蛋白质-蛋白质复合物的缔合率也在10(5)-10(6)M(-1)sec(-1)范围内,因此我们的结果表明,由去溶剂化和/或侧链产生的自由能垒在我们的简单扩散模型中完全忽略了复杂形成过程中的链冻结或结合漏斗中增加的坚固性,这些对蛋白-蛋白缔合的动力学没有明显贡献。直接从蛋白质-蛋白质结合漏斗的大小和几何形状计算缔合率的方法的透明物理解释使其成为布朗动力学模拟的有用补充。

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