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OptGraft: A computational procedure for transferring a binding site onto an existing protein scaffold

机译:OptGraft:一种将结合位点转移到现有蛋白质支架上的计算程序

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摘要

One of the many challenging tasks of protein design is the introduction of a completely new function into an existing protein scaffold. In this study, we introduce a new computational procedure OptGraft for placing a novel binding pocket onto a protein structure so as its geometry is minimally perturbed. This is accomplished by introducing a two-level procedure where we first identify where are the most appropriate locations to graft the new binding pocket into the protein fold by minimizing the departure from a set of geometric restraints using mixed-integer linear optimization. On identifying the suitable locations that can accommodate the new binding pocket, CHARMM energy calculations are employed to identify what mutations in the neighboring residues, if any, are needed to ensure that the minimum energy conformation of the binding pocket conserves the desired geometry. This computational framework is benchmarked against the results available in the literature for engineering a copper binding site into thioredoxin protein. Subsequently, OptGraft is used to guide the transfer of a calcium-binding pocket from thermitase protein (PDB: 1thm) into the first domain of CD2 protein (PDB:1hng). Experimental characterization of three de novo redesigned proteins with grafted calcium-binding centers demonstrated that they all exhibit high affinities for terbium (Kd ∼ 22, 38, and 55 μM) and can selectively bind calcium over magnesium.
机译:蛋白质设计的许多挑战性任务之一是在现有的蛋白质支架中引入全新功能。在这项研究中,我们介绍了一种新的计算程序OptGraft,该程序用于在蛋白质结构上放置一个新的结合口袋,以使其几何结构受到最小的干扰。这是通过引入两级程序完成的,其中我们首先通过使用混合整数线性优化来最小化一组几何约束的偏离,从而首先确定将新的结合口袋嫁接到蛋白质折叠中的最合适位置。在确定可以容纳新结合袋的合适位置后,采用CHARMM能量计算来确定相邻残基中的哪些突变(如果有),以确保结合袋的最小能量构型保留所需的几何形状。该计算框架是针对将铜结合位点工程化成硫氧还蛋白的文献中可获得的结果的基准。随后,OptGraft用于引导钙结合袋从热敏酶蛋白(PDB:1thm)转移到CD2蛋白的第一结构域(PDB:1hng)中。对三个从头重新设计的具有嫁接钙结合中心的蛋白质进行的实验表征表明,它们都对exhibit具有高亲和力(Kd约为22、38和55μM),并且可以选择性地与镁结合。

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