Ternisien C, Jandrot-Perrus M, Huisse M G, Guillin M C
Laboratoire de Recherche sur l'Hémostase et la Thrombose, Faculté Xavier Bichat, Paris, France.
Blood Coagul Fibrinolysis. 1991 Aug;2(4):521-8. doi: 10.1097/00001721-199108000-00005.
The purpose of this study was to determine the effect of chemical modification of lysyl residues on thrombin interaction with platelet membrane proteins. Modification of lysyl residues by pyridoxal-5'-phosphate affected two different sites on thrombin and resulted in a greatly decreased binding to platelets. Using a crosslinking bifunctional reagent [bis(sulphosuccinimidyl) suberate (BS3)], we show that modified thrombin retained the ability to form high molecular mass (greater than or equal to 400 kDa) complexes with yet unidentified platelet proteins and to bind to platelet protease nexin I, but had lost the ability to bind to platelet glycoprotein Ib (GPIb). As previously reported by others, heparin protected one of the two sites from phosphopyridoxylation. In contrast modified thrombin, heparin-protected modified thrombin retained the ability to bind to GPIb, indicating that the lysyl residue(s) protected by heparin from the modification are essential for GPIb binding. While unprotected modified thrombin failed to bind hirudin, heparin-protected modified thrombin retained its ability to bind the carboxy-terminal hirudin peptide H54-65. Tritium-labelling of the modified lysyl residues and degradation of modified thrombins by CNBr or trypsin confirmed that the lysyl residue(s) protected by heparin and essential for GPIb binding are located in the thrombin binding domain for the carboxyl-terminal tail of hirudin, within the sequence 18-73 of the thrombin B chain.
本研究的目的是确定赖氨酸残基的化学修饰对凝血酶与血小板膜蛋白相互作用的影响。用磷酸吡哆醛修饰赖氨酸残基会影响凝血酶上的两个不同位点,并导致其与血小板的结合大幅减少。使用一种交联双功能试剂[双(磺基琥珀酰亚胺)辛二酸酯(BS3)],我们发现修饰后的凝血酶仍能与尚未鉴定的血小板蛋白形成高分子量(大于或等于400 kDa)复合物,并与血小板蛋白酶nexin I结合,但失去了与血小板糖蛋白Ib(GPIb)结合的能力。正如其他人之前报道的那样,肝素可保护两个位点之一不被磷酸化吡啶修饰。相比之下,修饰后的凝血酶,即肝素保护的修饰凝血酶仍保留与GPIb结合的能力,这表明被肝素保护而未被修饰的赖氨酸残基对于GPIb结合至关重要。未受保护的修饰凝血酶无法结合水蛭素,而肝素保护的修饰凝血酶仍保留其结合羧基末端水蛭素肽H54-65的能力。对修饰的赖氨酸残基进行氚标记,并用溴化氰或胰蛋白酶对修饰的凝血酶进行降解,证实被肝素保护且对GPIb结合至关重要的赖氨酸残基位于凝血酶B链18-73序列中水蛭素羧基末端尾巴的凝血酶结合结构域内。