Vickers J D, Kinlough-Rathbone R L, Packham M A, Mustard J F
Department of Pathology, Faculty of Health Sciences, McMaster University, Hamilton, Canada.
Eur J Biochem. 1990 Oct 24;193(2):521-8. doi: 10.1111/j.1432-1033.1990.tb19367.x.
ADP-induced changes in inositol phospholipids, phosphatidic acid and inositol phosphates of human platelets have been studied in detail, using not only 32P labelling, but also by examining changes in amounts of the phospholipids, their labelling with [3H]glycerol and their specific radioactivities; changes in the labelling of inositol phosphates in platelets prelabelled with [3H]inositol were also measured. During the early (10 s) stage of reversible ADP-induced primary aggregation in a medium containing fibrinogen and with a concentration of Ca2+ in the physiological range (2 mM), the amounts of phosphatidylinositol 4,5-bisphosphate (PtdInsP2) and phosphatidylinositol 4-phosphate (PtdInsP) decreased (by 11.2 +/- 4.9% and 11.3 +/- 5.3%, respectively) while the labelling, but not the amount, of phosphatidic acid increased. The decreases do not appear to be attributable to the action of phospholipase C because the specific radioactivity of phosphatidic acid labelling with [3H]glycerol was not significantly increased at 10 s (although the initial specific radioactivities of the inositol phospholipids and PtdCho were more than double that of phosphatidic acid), and no increases in the labelling of inositol trisphosphate (InsP3), inositol bisphosphate (InsP2) or inositol phosphate (InsP) were detectable at 10 s. Shifts in the interconversions between PtdInsP2 and PtdInsP, and PtdInsP and PtdIns may occur. By 30 to 60 s, when deaggregation was beginning, the amounts of PtdInsP2, PtdInsP and phosphatidic acid were not different from those in unstimulated platelets, but large increases in the 32P-labelling and [3H]glycerol labelling of phosphatidic acid were observed. Formation of [3H]inositol-labelled InsP3 was not detectable at any time in association with ADP-induced primary aggregation, indicating that degradation of PtdInsP2 by phospholipase C is not appreciably stimulated by ADP. These findings were compared with those obtained when platelets were aggregated by ADP in a medium without added of Ca2+ in which secondary aggregation associated with thromboxane A2 (TXA2) formation and release of granule contents occurs. At 10 s (during primary aggregation) the changes were similar in the two media. At 30 s and 60 s (during secondary aggregation in the low-Ca2+ medium), the increases in PtdInsP2, PtdInsP and phosphatidic acid in platelets suspended in the absence of added Ca2+ were larger than those in platelets suspended in the presence of 2 mM Ca2+. In the absence of added Ca2+, ADP-induced increases in the labelling of InsP3, InsP2 and InsP which were probably due to the effects of TXA2 since they were abolished by aspirin.(ABSTRACT TRUNCATED AT 400 WORDS)
利用³²P标记,同时通过检测磷脂含量变化、其用[³H]甘油的标记情况以及它们的比放射性,还测量了预先用[³H]肌醇标记的血小板中肌醇磷酸的标记变化,对ADP诱导的人血小板中肌醇磷脂、磷脂酸和肌醇磷酸的变化进行了详细研究。在含有纤维蛋白原且Ca²⁺浓度处于生理范围(2 mM)的培养基中,ADP诱导可逆性初级聚集的早期(10秒)阶段,磷脂酰肌醇4,5 - 二磷酸(PtdInsP2)和磷脂酰肌醇4 - 磷酸(PtdInsP)的量减少(分别减少11.2±4.9%和11.3±5.3%),而磷脂酸的标记增加,但量未增加。这些减少似乎并非归因于磷脂酶C的作用,因为在10秒时用[³H]甘油标记的磷脂酸的比放射性没有显著增加(尽管肌醇磷脂和磷脂酰胆碱的初始比放射性是磷脂酸的两倍多),并且在10秒时未检测到肌醇三磷酸(InsP3)、肌醇二磷酸(InsP2)或肌醇磷酸(InsP)的标记增加。PtdInsP2与PtdInsP之间以及PtdInsP与PtdIns之间的相互转化可能发生变化。到30至60秒,当开始解聚时,PtdInsP2、PtdInsP和磷脂酸的量与未刺激的血小板中的量没有差异,但观察到磷脂酸的³²P标记和[³H]甘油标记大幅增加。在ADP诱导的初级聚集中,任何时候都未检测到[³H]肌醇标记的InsP3的形成,这表明ADP并未明显刺激磷脂酶C对PtdInsP2的降解。将这些发现与在不添加Ca²⁺的培养基中ADP使血小板聚集时获得的结果进行了比较,在这种情况下会发生与血栓素A2(TXA2)形成和颗粒内容物释放相关的次级聚集。在10秒(初级聚集期间),两种培养基中的变化相似。在30秒和60秒(低Ca²⁺培养基中的次级聚集期间),悬浮在无添加Ca²⁺培养基中的血小板中PtdInsP2、PtdInsP和磷脂酸的增加大于悬浮在含有2 mM Ca²⁺培养基中的血小板。在无添加Ca²⁺的情况下,ADP诱导的InsP3、InsP2和InsP标记增加可能是由于TXA2的作用,因为它们被阿司匹林消除。(摘要截断于400字)