首页> 外文期刊>Journal of the American Chemical Society >Probing The Lower Size Limit For Protein-like Fold Stability: Ten-residue Microproteins With Specific, Rigid Structures Inrnwater
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Probing The Lower Size Limit For Protein-like Fold Stability: Ten-residue Microproteins With Specific, Rigid Structures Inrnwater

机译:探索蛋白质样折叠稳定性的下限:具有特定刚性结构的十残基微蛋白

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摘要

Mutational optimization of two long-range interactions first observed in AC-WINGKWT-NH_2, (a) bifurcated H-bonding involving the threonine amide H_n and side chain OH and the N-terminal acetyl carbonyl and (b) an H-bond between the entgegen-H_N of the C-terminal amide and the indole ring of Trp6 that stabilizes a face-to-edge indole/indole interaction between Trp1 and Trp6, has afforded ≤ 10 residue systems that yield a remarkably stable fold in water. Optimization was achieved by designing a hydrophobic cluster that sequesters these H-bonds from solvent exposure. The structures and extent of amide H/D exchange protection for CH_3CH_2CO-WlpGXWTGPS (p = D-Pro, X = Leu or He) were determined. These two systems are greater than 94% folded at 298 K (97.5% at 280 K) with melting temperatures >75 ℃. The fold appears to display minimal fluxionality; a well-converged NMR structure rationalizes all of the large structuring shifts observed, and we suggest that these designed constructs can be viewed as microproteins.
机译:在AC-WINGKWT-NH_2中首先观察到的两个远程相互作用的突变优化,(a)涉及苏氨酸酰胺H_n和侧链OH和N末端乙酰基羰基的分叉H键,以及(b)两者之间的H键C端酰胺和Trp6的吲哚环的engegen-H_N稳定了Trp1和Trp6之间的面对面的吲哚/吲哚相互作用,已提供≤10个残基系统,可在水中产生非常稳定的折叠。通过设计疏水簇将溶剂接触中的这些氢键隔离,可以实现优化。确定了CH_3CH_2CO-WlpGXWTGPS(p = D-Pro,X = Leu或He)酰胺H / D交换保护的结构和程度。这两个系统在熔化温度> 75℃时,在298 K下折叠率大于94%(在280 K下折叠率为97.5%)。褶皱似乎显示出最小的流动性。良好融合的NMR结构使观察到的所有大结构转变合理化,我们建议将这些设计的构建体视为微蛋白。

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