Bowley Sheryl R, Okumura Nobuo, Lord Susan T
Department of Chemistry, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina 27599, USA.
Biochemistry. 2009 Sep 15;48(36):8656-63. doi: 10.1021/bi900239b.
"A:a" knob-hole interactions and D:D interfacial interactions are important for fibrin polymerization. Previous studies with recombinant gammaN308K fibrinogen, a substitution at the D:D interface, showed impaired polymerization. We examined the molecular basis for this loss of function by solving the crystal structure of gammaN308K fragment D. In contrast to previous fragment D crystals, the gammaN308K crystals belonged to a tetragonal space group with an unusually long unit cell (a = b = 95 A, c = 448.3 A). Alignment of the normal and gammaN308K structures showed the global structure of the variant was not changed and the knob "A" peptide GPRP was bound as usual to hole "a". The substitution introduced an elongated positively charged patch in the D:D region. The structure showed novel, symmetric D:D crystal contacts between gammaN308K molecules, indicating the normal asymmetric D:D interface in fibrin would be unstable in this variant. We examined GPRP binding to gammaN308K in solution by plasmin protection assay. The results showed weaker peptide binding, suggesting that "A:a" interactions were altered. We examined fibrin network structures by scanning electron microscopy and found the variant fibers were thicker and more heterogeneous than normal fibers. Considered together, our structural and biochemical studies indicate both "A:a" and D:D interactions are weaker. We conclude that stable protofibrils cannot assemble from gammaN308K monomers, leading to impaired polymerization.
“A:a”纽孔相互作用和D:D界面相互作用对纤维蛋白聚合很重要。先前对重组γN308K纤维蛋白原(一种在D:D界面处的取代)的研究表明其聚合受损。我们通过解析γN308K片段D的晶体结构来研究这种功能丧失的分子基础。与先前的片段D晶体不同,γN308K晶体属于四方晶系空间群,具有异常长的晶胞(a = b = 95 Å,c = 448.3 Å)。正常结构与γN308K结构的比对显示该变体的整体结构未改变,纽“A”肽GPRP像往常一样与孔“a”结合。该取代在D:D区域引入了一个细长的带正电荷区域。该结构显示了γN308K分子之间新颖的、对称的D:D晶体接触,表明纤维蛋白中正常的不对称D:D界面在该变体中会不稳定。我们通过纤溶酶保护试验检测了溶液中GPRP与γN308K的结合。结果显示肽结合较弱,表明“A:a”相互作用发生了改变。我们通过扫描电子显微镜检查了纤维蛋白网络结构,发现变体纤维比正常纤维更粗且更不均匀。综合考虑,我们的结构和生化研究表明“A:a”和D:D相互作用都较弱。我们得出结论,γN308K单体无法组装成稳定的原纤维,导致聚合受损。