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Crystal and NMR structures of a Trp-cage mini-protein benchmark for computational fold prediction

机译:Trp笼迷你蛋白基准的晶体和NMR结构用于计算折叠预测

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摘要

To provide high-resolution X-ray crystallographic structures of a peptide with the Trp-cage fold, we prepared a cyclized version of this motif. Cyclized Trp-cage is remarkably stable and afforded two crystal forms suitable for X-ray diffraction. The resulting higher resolution crystal structures validate the prior NMR models and provide explanations for experimental observations that could not be rationalized by NMR structural data, including the structural basis for the increase in fold stability associated with motif cyclization and the manner in which a polar serine side chain is accommodated in the hydrophobic interior. A hexameric oligomer of the cyclic peptide is found in both crystal forms and indicates that under appropriate conditions, this minimized system may also serve as a model for protein-protein interactions.
机译:为了提供具有Trp笼折叠的肽的高分辨率X射线晶体学结构,我们准备了该基序的环化版本。环化的Trp笼非常稳定,并提供了两种适用于X射线衍射的晶型。由此产生的更高分辨率的晶体结构验证了先前的NMR模型,并为无法通过NMR结构数据合理化的实验观察提供了解释,包括与基序环化相关的折叠稳定性增加的结构基础以及极性丝氨酸侧的方式链容纳在疏水内部。环状肽的六聚体低聚物以两种晶体形式存在,表明在适当条件下,这种最小化的系统也可以用作蛋白质-蛋白质相互作用的模型。

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