Hrabal R, Komives E A, Ni F
Biotechnology Research Institute, National Research Council of Canada, Montréal, Québec, Canada.
Protein Sci. 1996 Feb;5(2):195-203. doi: 10.1002/pro.5560050202.
The thrombin-bound structures of native peptide fragments from the fifth EGF-like domain of thrombomodulin were determined by use of NMR and transferred NOE spectroscopy. The bound peptides assume an EGF-like structure of an antiparallel beta-sheet, a novel structural motif observed for a bound peptide in protein-peptide complexes. There is a remarkable structural resiliency of this structure motif manifested in its ability to accommodate a different number of residues within the disulfide loop. Docking experiments revealed that the key contacts with thrombin are hydrophobic interactions between the side chains of residues Ile 414 and Ile 424 of thrombomodulin and a hydrophobic pocket on the thrombin surface. Residues Leu 415, Phe 419, and Ile 420, which would have been buried in intact EGF-like domains, are unfavorably exposed in the complex of thrombin with the EGF-like thrombomodulin fragment, thus providing a rationale for the enhancement of binding affinity upon the deletion of Ile 420. The unique beta-sheet structures of the bound peptides are specified by the presence of disulfide bridges in the peptides because a corresponding linear thrombomodulin fragment folds into a sheet structure with a different backbone topology. The different bound conformations for the linear and the cyclized peptides indicate that side-chain interactions within a specific environment may dictate the folding of bound peptides in protein-peptide complexes.
通过核磁共振(NMR)和转移核欧沃豪斯效应(NOE)光谱法测定了凝血酶调节蛋白第五个表皮生长因子(EGF)样结构域天然肽片段与凝血酶结合的结构。结合的肽呈现出反平行β-折叠的EGF样结构,这是在蛋白质-肽复合物中观察到的一种新型结合肽结构基序。这种结构基序具有显著的结构弹性,表现为其能够在二硫键环内容纳不同数量的残基。对接实验表明,与凝血酶的关键接触是凝血酶调节蛋白中Ile 414和Ile 424残基侧链与凝血酶表面疏水口袋之间的疏水相互作用。在完整的EGF样结构域中本应被掩埋的Leu 415、Phe 419和Ile 420残基,在凝血酶与EGF样凝血酶调节蛋白片段的复合物中暴露不利,这为删除Ile 420后结合亲和力增强提供了理论依据。结合肽独特的β-折叠结构由肽中二硫键的存在决定,因为相应的线性凝血酶调节蛋白片段折叠成具有不同主链拓扑结构的片状结构。线性肽和环化肽不同的结合构象表明,特定环境中的侧链相互作用可能决定蛋白质-肽复合物中结合肽的折叠。