Kier Brandon L, Andersen Niels H
Department of Chemistry, University of Washington, Seattle, Washington 98195, USA.
J Am Chem Soc. 2008 Nov 5;130(44):14675-83. doi: 10.1021/ja804656h. Epub 2008 Oct 9.
Mutational optimization of two long-range interactions first observed in Ac-WINGKWT-NH2, (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 < or = 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 CH3CH2CO-WI pGXWTGPS (p = D-Pro, X = Leu or Ile) were determined. These two systems are greater than 94% folded at 298 K (97.5% at 280 K) with melting temperatures > 75 degrees C. 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.
对最初在Ac-WINGKWT-NH2中观察到的两种长程相互作用进行突变优化,(a)涉及苏氨酸酰胺H(N)和侧链OH以及N端乙酰羰基的分叉氢键,(b)C端酰胺的反式-H(N)与Trp6的吲哚环之间的氢键,该氢键稳定了Trp1和Trp6之间的面对面-边对边吲哚/吲哚相互作用,得到了在水中能产生非常稳定折叠的≤10个残基的体系。通过设计一个疏水簇来实现优化,该疏水簇将这些氢键与溶剂隔离。测定了CH3CH2CO-WI pGXWTGPS(p = D-脯氨酸,X = 亮氨酸或异亮氨酸)的酰胺H/D交换保护的结构和程度。这两个体系在298 K时折叠率大于94%(在280 K时为97.5%),解链温度>75℃。该折叠似乎显示出最小的流动性;一个收敛良好的NMR结构解释了所有观察到的大的结构位移,我们认为这些设计的构建体可以被视为微蛋白。