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Design of a Novel Globular Protein Fold with Atomic-Level Accuracy

机译:具有原子水平准确性的新型球状蛋白折叠的设计

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A major challenge of computational protein design is the creation of novel proteins with arbitrarily chosen three-dimensional structures. Here, we used a general computational strategy that iterates between sequence design and structure prediction to design a 93-residue α /β protein called Top7 with a novel sequence and topology. Top7 was found experimentally to be folded and extremely stable, and the x-ray crystal structure of Top7 is similar (root mean square deviation equals 1.2 angstroms) to the design model. The ability to design a new protein fold makes possible the exploration of the large regions of the protein universe not yet observed in nature.
机译:计算蛋白质设计的主要挑战是创建具有任意选择的三维结构的新型蛋白质。在这里,我们使用了一种通用的计算策略,该策略在序列设计和结构预测之间进行迭代,以设计具有新序列和拓扑结构的93个残基的α/β蛋白Top7。通过实验发现Top7可以折叠并且非常稳定,并且Top7的X射线晶体结构与设计模型相似(均方根偏差等于1.2埃)。设计新蛋白质折叠的能力使探索尚未在自然界中观察到的蛋白质宇宙大区域成为可能。

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