Everse S J, Spraggon G, Veerapandian L, Doolittle R F
Center for Molecular Genetics, University of California, San Diego, La Jolla 92093-0634, USA.
Biochemistry. 1999 Mar 9;38(10):2941-6. doi: 10.1021/bi982626w.
The structure of fragment double-D from human fibrin has been solved in the presence and absence of the peptide ligands that simulate the two knobs exposed by the removal of fibrinopeptides A and B, respectively. All told, six crystal structures have been determined, three of which are reported here for the first time: namely, fragments D and double-D with the peptide GHRPam alone and double-D in the absence of any peptide ligand. Comparison of the structures has revealed a series of conformational changes that are brought about by the various knob-hole interactions. Of greatest interest is a moveable "flap" of two negatively charged amino acids (Glubeta397 and Aspbeta398) whose side chains are pinned back to the coiled coil with a calcium atom bridge until GHRPam occupies the beta-chain pocket. Additionally, in the absence of the peptide ligand GPRPam, GHRPam binds to the gamma-chain pocket, a new calcium-binding site being formed concomitantly.
在分别模拟去除纤维蛋白肽A和B后暴露的两个“旋钮”的肽配体存在和不存在的情况下,已经解析了人纤维蛋白片段双-D的结构。总共确定了六个晶体结构,其中三个是首次在此报道:即分别与肽GHRPam结合的片段D和双-D以及不存在任何肽配体的双-D。结构比较揭示了由各种旋钮-孔相互作用引起的一系列构象变化。最令人感兴趣的是由两个带负电荷的氨基酸(β397位谷氨酸和β398位天冬氨酸)组成的可移动“瓣片”,其侧链通过钙原子桥固定在卷曲螺旋上,直到GHRPam占据β链口袋。此外,在没有肽配体GPRPam的情况下,GHRPam结合到γ链口袋,同时形成一个新的钙结合位点。