Mulichak A M, Tulinsky A, Ravichandran K G
Department of Chemistry, Michigan State University, East Lansing 48824.
Biochemistry. 1991 Oct 29;30(43):10576-88. doi: 10.1021/bi00107a029.
The crystal structure of human plasminogen kringle 4 (PGK4) has been solved by molecular replacement using the bovine prothrombin kringle 1 (PTK1) structure as a model and refined by restrained least-squares methods to an R factor of 14.2% at 1.9-A resolution. The K4 structure is similar to that of PTK1, and an insertion of one residue at position 59 of the latter has minimal effect on the protein folding. The PGK4 structure is highly stabilized by an internal hydrophobic core and an extensive hydrogen-bonding network. Features new to this kringle include a cis peptide bond at Pro30 and the presence of two alternate, perpendicular, and equally occupied orientations for the Cys75 side chain. The K4 lysine-binding site consists of a hydrophobic trough formed by the Trp62 and Trp72 indole rings, with anionic (Asp55/Asp57) and cationic (Lys35/Arg71) charge pairs at either end. With the adjacent Asp5 and Arg32 residues, these result in triply charged anionic and cationic clusters (pH of crystals at 6.0), which, in addition to the unusually high accessibility of the Trp72 side chain, serve as an obvious marker of the binding site on the K4 surface. A complex intermolecular interaction occurs between the binding sites of symmetry-related molecules involving a highly ordered sulfate anion of solvation in which the Arg32 side chain of a neighboring kringle occupies the binding site.
人纤溶酶原kringle 4(PGK4)的晶体结构已通过分子置换法解析,以牛凝血酶原kringle 1(PTK1)结构为模型,并通过约束最小二乘法精修至1.9埃分辨率下R因子为14.2%。K4结构与PTK1相似,PTK1在第59位插入一个残基对蛋白质折叠影响最小。PGK4结构通过内部疏水核心和广泛的氢键网络高度稳定。该kringle的新特征包括Pro30处的顺式肽键以及Cys75侧链存在两种交替、垂直且占有率相同的取向。K4赖氨酸结合位点由Trp62和Trp72吲哚环形成的疏水凹槽组成,两端分别有阴离子(Asp55/Asp57)和阳离子(Lys35/Arg71)电荷对。与相邻的Asp5和Arg32残基一起,这些形成了三重带电的阴离子和阳离子簇(晶体pH值为6.0),除了Trp72侧链具有异常高的可及性外,这些还作为K4表面结合位点的明显标记。对称相关分子的结合位点之间发生复杂的分子间相互作用,涉及溶剂化的高度有序硫酸根阴离子,其中相邻kringle的Arg32侧链占据结合位点。