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凝血酶激活人血小板过程中的膜微环境变化。一项使用荧光探针的研究。

Membrane microenvironmental changes during activation of human blood platelets by thrombin. A study with a fluorescent probe.

作者信息

Nathan I, Fleischer G, Livne A, Dvilansky A, Parola A H

出版信息

J Biol Chem. 1979 Oct 10;254(19):9822-8.

PMID:489573
Abstract

Membrane microenvironmental changes associated with thrombin-induced platelet activation were followed by fluorescence intensity and polarization studies of 1,6-diphenyl-1,3,5-hexatriene (DPH)-labeled human platelets. The labeling of washed platelets with DPH did not alter platelet intactness and morphology. In response to thrombin, DPH-labeled platelets exhibited reduced serotonin release, yet aggregation was barely inhibited. Shape change induced by thrombin or ADP was indistinguishable in control and in DPH-labeled platelets. During platelet aggregation induced by thrombin, fluorescence intensity increased by about 14%, which may indicate a more hydrophobic exposure of the probe. However, no change in fluorescence was detected during platelet shape change, induced either by thrombin in presence of EDTA or by ADP. Thrombin-activated platelets exhibited an increase in values of fluorescence polarization (P) during the stages of shape change and secretion, which further increased during aggregation. A similar pattern of increase in P values characterized platelet shape changes, caused either by thrombin in the presence of EDTA or by ADP. Changes in individual platelets are discernible from the alterations of the aggregating cells. These results may indicate that platelet activation is accompanied by an increase in rigidity of the membrane lipids. Functionally, the elevated "microviscosity" may reflect a primary role of membrane lipids in modulating the process of platelet activation or secondary transitions in lipids due to membrane events mediated by proteins.

摘要

通过对1,6 - 二苯基 - 1,3,5 - 己三烯(DPH)标记的人血小板进行荧光强度和偏振研究,追踪与凝血酶诱导的血小板活化相关的膜微环境变化。用DPH标记洗涤过的血小板不会改变血小板的完整性和形态。对凝血酶的反应中,DPH标记的血小板血清素释放减少,但聚集几乎未受抑制。在对照血小板和DPH标记的血小板中,凝血酶或ADP诱导的形状变化无法区分。在凝血酶诱导的血小板聚集过程中,荧光强度增加了约14%,这可能表明探针的疏水性暴露增加。然而,在由EDTA存在下的凝血酶或ADP诱导的血小板形状变化过程中,未检测到荧光变化。在形状变化和分泌阶段,凝血酶激活的血小板荧光偏振(P)值增加,在聚集过程中进一步增加。由EDTA存在下的凝血酶或ADP引起的血小板形状变化也具有类似的P值增加模式。从聚集细胞的变化中可以辨别出单个血小板的变化。这些结果可能表明血小板活化伴随着膜脂刚性的增加。在功能上,升高的“微粘度”可能反映了膜脂在调节血小板活化过程中的主要作用,或者是由于蛋白质介导的膜事件导致的脂类二级转变。

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