Budayova-Spano Monika, Grabarse Wolfgang, Thielens Nicole M, Hillen Heinz, Lacroix Monique, Schmidt Martin, Fontecilla-Camps Juan Carlos, Arlaud Gérard J, Gaboriaud Christine
LCCP, Institut de Biologie Structurale Jean-Pierre Ebel, CEA-CNRS, 41 rue Jules Horowitz, Grenoble, France.
Structure. 2002 Nov;10(11):1509-19. doi: 10.1016/s0969-2126(02)00881-x.
C1r is the serine protease (SP) that mediates autoactivation of C1, the complex that triggers the classical complement pathway. We have determined the crystal structure of two fragments from the human C1r catalytic domain, each encompassing the second complement control protein (CCP2) module and the SP domain. The wild-type species has an active structure, whereas the S637A mutant is a zymogen. The structures reveal a restricted hinge flexibility of the CCP2-SP interface, and both are characterized by the unique alpha-helical conformation of loop E. The zymogen activation domain exhibits high mobility, and the active structure shows a restricted access to most substrate binding subsites. Further implications relevant to the C1r self-activation process are derived from protein-protein interactions in the crystals.
C1r是一种丝氨酸蛋白酶(SP),它介导C1的自激活,C1是触发经典补体途径的复合物。我们已经确定了来自人C1r催化结构域的两个片段的晶体结构,每个片段都包含第二个补体控制蛋白(CCP2)模块和SP结构域。野生型具有活性结构,而S637A突变体是一种酶原。这些结构揭示了CCP2-SP界面处有限的铰链灵活性,并且两者都以环E独特的α-螺旋构象为特征。酶原激活结构域表现出高迁移率,而活性结构显示对大多数底物结合亚位点的可及性受限。与C1r自激活过程相关的进一步影响来自晶体中的蛋白质-蛋白质相互作用。