Lim-Wilby M S, Hallenga K, de Maeyer M, Lasters I, Vlasuk G P, Brunck T K
Corvas International, Inc., San Diego, California 92121, USA.
Protein Sci. 1995 Feb;4(2):178-86. doi: 10.1002/pro.5560040205.
Tick anticoagulant peptide (TAP) is a potent and selective 60-amino acid inhibitor of the serine protease Factor Xa (fXa), the penultimate enzyme in the blood coagulation cascade. The structural features of TAP responsible for its remarkable specificity for fXa are unknown, but the binding to its target appears to be unique. The elucidation of the TAP structure may facilitate our understanding of this new mode of serine protease inhibition and could provide a basis for the design of novel fXa inhibitors. Analyses of homo- and heteronuclear two-dimensional NMR spectra (total correlation spectroscopy, nuclear Overhauser effect spectroscopy [NOESY], constant time heteronuclear single quantum correlation spectroscopy [CT-HSQC], and HSQC-NOESY; 600 MHz; 1.5 mM TAP; pH 2.5) of unlabeled, 13C-labeled, and 15N-labeled TAP provided nearly complete 1H sequence-specific resonance assignments. Secondary structural elements were identified by characteristic NOE patterns and D2O amide proton-exchange experiments. A three-dimensional structure of TAP was generated from 412 NOESY-derived distance and 47 dihedral angle constraints. The structural elements of TAP are similar in some respects to those of the Kunitz serine protease inhibitor family, with which TAP shares weak sequence homology. This structure, coupled with previous kinetic and biochemical information, confirms previous suggestions that TAP has a unique mode of binding to fXa.
蜱抗凝肽(TAP)是一种强效且具有选择性的60个氨基酸的丝氨酸蛋白酶因子Xa(fXa)抑制剂,fXa是血液凝固级联反应中的倒数第二个酶。TAP对fXa具有显著特异性的结构特征尚不清楚,但其与靶点的结合似乎很独特。阐明TAP的结构可能有助于我们理解这种新的丝氨酸蛋白酶抑制模式,并可为新型fXa抑制剂的设计提供基础。对未标记、13C标记和15N标记的TAP进行同核和异核二维核磁共振谱分析(全相关谱、核Overhauser效应谱[NOESY]、恒时异核单量子相关谱[CT-HSQC]和HSQC-NOESY;600 MHz;1.5 mM TAP;pH 2.5),提供了几乎完整的1H序列特异性共振归属。通过特征性的NOE模式和D2O酰胺质子交换实验确定二级结构元件。从412个NOESY衍生的距离和47个二面角约束生成了TAP的三维结构。TAP的结构元件在某些方面与Kunitz丝氨酸蛋白酶抑制剂家族的结构元件相似,TAP与该家族具有较弱的序列同源性。该结构与先前的动力学和生化信息相结合,证实了先前关于TAP与fXa具有独特结合模式的推测。