Fujimoto T, Fujimura K, Kuramoto A
Department of Internal Medicine, Hiroshima University, Japan.
Thromb Haemost. 1991 Nov 1;66(5):598-603.
The ability of the platelet membrane glycoprotein (GP) IIb-IIIa complex to function as a Ca2+ channel was investigated by electrophysiological methods. The GPIIb-IIIa complex was purified with an electrically silent detergent, CHAPS, and reconstituted into liposomes. After incorporation of these liposomes to a planar phospholipid bilayer, Ba(2+)-permeable channel currents were detected. Since neither residual detergent nor dissociated GPIIb and IIIa produced any currents, the observed channel currents were attributed to the GPIIb-IIIa complex. These channel currents showed similar electrical properties with the Ca2+ channel previously described in platelet plasma membrane; a single channel conductance of approximately 10 pS in 53 mM Ba2+ solution and voltage-independency. It was concluded that the purified GPIIb-IIIa complex can act as a divalent cation-permeable channel in the artificial phospholipid bilayer.
采用电生理方法研究了血小板膜糖蛋白(GP)IIb-IIIa复合物作为Ca2+通道发挥功能的能力。GPIIb-IIIa复合物用一种电沉默去污剂CHAPS进行纯化,并重构到脂质体中。将这些脂质体整合到平面磷脂双分子层后,检测到了Ba(2+)可通透的通道电流。由于残留去污剂以及解离的GPIIb和IIIa均未产生任何电流,因此观察到的通道电流归因于GPIIb-IIIa复合物。这些通道电流与先前在血小板质膜中描述的Ca2+通道具有相似的电学特性;在53 mM Ba2+溶液中单个通道电导约为10 pS,且不依赖电压。得出的结论是,纯化的GPIIb-IIIa复合物在人工磷脂双分子层中可作为二价阳离子可通透通道发挥作用。