Koike K, Holmsen H
Thrombosis Research Center, Temple University, Philadelphia, PA.
Thromb Haemost. 1987 Dec 18;58(4):1053-9.
The requirement for receptor occupancy in thrombin-induced secretion in human platelets has been studied. When increasing concentrations of thrombin were added to gel-filtered platelets containing a constant, high concentration of hirudin, dense granule secretion was initiated at lower thrombin concentrations than those required for alpha-granule secretion and aggregation; acid hydrolase secretion required higher concentrations. A 62-fold excess of hirudin produced abrupt stop of dense granule secretion and alpha-granule secretion when added to non-aggregating (no stirring) platelets shortly after thrombin; it had no affect after these secretory process had reached about 30% of their maximal values. Acid hydrolase secretion was, however, abruptly stopped by hirudin at any stage. When the platelets were allowed to aggregate, the three secretory processes increased their rates and were abruptly stopped by hirudin at any stage. Aggregation (optical) occurred slower than dense granule and alpha-granule secretion, and was reversed by hirudin when added before it had reached 30% of its maximum. It is concluded that alpha-granule secretion, like dense granule secretion, only requires a short receptor occupancy to be completed, in contrast to the requirement for sustained occupancy for acid hydrolase secretion. alpha-Granule secretion might, however, require longer occupancy than dense granule secretion. Aggregation is believed to potentiate secretion through close cell contact and the secretion processes were inhibited by hirudin through hirudin's effect on aggregation.
对人血小板中凝血酶诱导分泌时受体占据的要求进行了研究。当将浓度不断增加的凝血酶添加到含有恒定高浓度水蛭素的凝胶过滤血小板中时,致密颗粒分泌在低于α颗粒分泌和聚集所需的凝血酶浓度时就开始了;酸性水解酶分泌则需要更高的浓度。当在凝血酶作用后不久将62倍过量的水蛭素添加到未聚集(不搅拌)的血小板中时,致密颗粒分泌和α颗粒分泌会突然停止;在这些分泌过程达到其最大值的约30%后,水蛭素对其没有影响。然而,酸性水解酶分泌在任何阶段都会被水蛭素突然停止。当血小板聚集时,这三种分泌过程的速率增加,并在任何阶段都被水蛭素突然停止。聚集(光学法)比致密颗粒和α颗粒分泌发生得慢,并且在达到其最大值的30%之前添加水蛭素时,聚集会被逆转。结论是,与酸性水解酶分泌需要持续占据受体相反,α颗粒分泌与致密颗粒分泌一样,仅需要短暂的受体占据即可完成。然而,α颗粒分泌可能比致密颗粒分泌需要更长时间的占据。聚集被认为通过紧密的细胞接触增强分泌,并且水蛭素通过其对聚集的作用抑制分泌过程。