Elzagallaai A, Rosé S D, Brandan N C, Trifaró J M
Secretory Process Research Programme, Department of Cellular and Molecular Medicine, Faculty of Medicine, University of Ottawa, Ottawa, Ontario K1H 8M5, Canada.
Br J Haematol. 2001 Mar;112(3):593-602. doi: 10.1046/j.1365-2141.2001.02642.x.
Stimulation of platelets by thrombin induces protein kinase C (PKC) activation, phosphorylation of pleckstrin, aggregation and serotonin release. Here, we demonstrate that, in human platelets, thrombin stimulation also induced phosphorylation of the myristoylated alanine-rich C kinase substrate (MARCKS) and serotonin release in intact and digitonin-permeabilized platelets. MARCKS is known to bind actin and cross-link actin filaments, and this is inhibited by PKC-evoked MARCKS phosphorylation. MARCKS phosphorylation and serotonin release in response to increasing concentrations of thrombin have a similar EC50 and time course and, in permeabilized platelets, peptide MPSD, with an amino acid sequence corresponding to the phosphorylation site domain of MARCKS, blocked both responses. However, pleckstrin and myosin light chain phosphorylations were not modified. Ala-MPSD, in which the four serine residues of MPSD were substituted by alanines was ineffective. The results suggest a role for MARCKS in platelet secretion. The fact that pleckstrin phosphorylation has a different time course and was not modified in the presence of MPSD when MARCKS phosphorylation and serotonin release were inhibited would suggest either that pleckstrin phosphorylation is unrelated to secretion or that it might only be involved upstream in the events leading to secretion.
凝血酶刺激血小板可诱导蛋白激酶C(PKC)激活、普列克底物蛋白磷酸化、血小板聚集及5-羟色胺释放。在此,我们证明,在人血小板中,凝血酶刺激还可诱导完整及洋地黄皂苷通透处理的血小板中肉豆蔻酰化富含丙氨酸的C激酶底物(MARCKS)磷酸化及5-羟色胺释放。已知MARCKS可结合肌动蛋白并交联肌动蛋白丝,而PKC诱导的MARCKS磷酸化可抑制此作用。随着凝血酶浓度增加,MARCKS磷酸化及5-羟色胺释放具有相似的半数有效浓度(EC50)和时间进程,且在通透处理的血小板中,氨基酸序列对应于MARCKS磷酸化位点结构域的肽MPSD可阻断这两种反应。然而,普列克底物蛋白及肌球蛋白轻链的磷酸化未发生改变。将MPSD的四个丝氨酸残基替换为丙氨酸的丙氨酸-MPSD无效。结果提示MARCKS在血小板分泌中发挥作用。当MARCKS磷酸化及5-羟色胺释放受到抑制时,普列克底物蛋白磷酸化具有不同的时间进程且在MPSD存在时未发生改变,这表明要么普列克底物蛋白磷酸化与分泌无关,要么它可能仅参与导致分泌的上游事件。