Kenney D M, Chao F C
J Cell Physiol. 1980 May;103(2):289-98. doi: 10.1002/jcp.1041030214.
Cytoplasmic calcium levels are believed to be important in blood platelet activation. Upon activation, the discrete marginal microtubule band, which maintains the discoid shape of non-activated platelets, becomes disrupted. Present studies demonstrate that the extent of assembly of the marginal microtubule band is related to cytoplasmic calcium levels. The divalent cationophore, A23187, causes platelet aggregation, secretion, and contraction by promoting calcium transport from intraplatelet storage sites into the cytoplasm. A23187 caused disassembly of platelet microtubules. Quantitation of electron micrographs revealed that numbers of microtubules were reduced by approximately 80% after A23187 treatment. Secondly, assembled microtubules in homogenates of platelets, in which microtubules were stabilized prior to homogenization, were decreased in favor of free tubulin in A23187-treated platelets. Thirdly, A23187 increased 14C-colchicine binding by intact platelets; this also indicated a shift in the microtubule subunit equilibrium to favor free, colchicine-binding tubulin subunits. In control experiments, A23187 did not affect the stability of platelet tubulin, the colchicine binding reaction, or the total tubulin content of platelets. Stimulation of colchicine binding depended on A23187 concentration (0.05-0.5 microM) and did not require extracellular calcium. A23187-stimulation of colchicine binding was blocked by dibutyryl cyclic AMP (0.80 mM) and/or 3-isobutyl-1-methylxanthine (50 microM) and by indomethacin (10 microM). Cyclic AMP or indomethacin also interferes with A23187-induced platelet activation, but indomethacin is not likely to completely inhibit the perturbation of intraplatelet calcium gradients by A23187. It is suggested that A23187-induced microtubule disassembly may be an indirect effect of calcium on microtubules.
细胞质钙水平被认为在血小板激活过程中很重要。激活后,维持未激活血小板盘状形状的离散边缘微管带会被破坏。目前的研究表明,边缘微管带的组装程度与细胞质钙水平有关。二价阳离子载体A23187通过促进钙从血小板内储存部位转运到细胞质中,引起血小板聚集、分泌和收缩。A23187导致血小板微管解聚。电子显微镜照片定量显示,A23187处理后微管数量减少了约80%。其次,在匀浆前微管已稳定的血小板匀浆中,组装好的微管在A23187处理的血小板中减少,有利于游离微管蛋白。第三,A23187增加了完整血小板对14C-秋水仙碱的结合;这也表明微管亚基平衡发生了变化,有利于游离的、能与秋水仙碱结合的微管蛋白亚基。在对照实验中,A23187不影响血小板微管蛋白的稳定性、秋水仙碱结合反应或血小板的总微管蛋白含量。秋水仙碱结合的刺激取决于A23187的浓度(0.05 - 0.5微摩尔),且不需要细胞外钙。二丁酰环磷腺苷(0.80毫摩尔)和/或3-异丁基-1-甲基黄嘌呤(50微摩尔)以及吲哚美辛(10微摩尔)可阻断A23187对秋水仙碱结合的刺激。环磷腺苷或吲哚美辛也会干扰A23187诱导的血小板激活,但吲哚美辛不太可能完全抑制A23187对血小板内钙梯度的扰动。有人认为,A23187诱导的微管解聚可能是钙对微管的间接作用。