首页> 美国卫生研究院文献>Biochemical Journal >Quantification of energy consumption in platelets during thrombin-induced aggregation and secretion. Tight coupling between platelet responses and the increment in energy consumption.
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Quantification of energy consumption in platelets during thrombin-induced aggregation and secretion. Tight coupling between platelet responses and the increment in energy consumption.

机译:凝血酶诱导的聚集和分泌过程中血小板能量消耗的量化。血小板反应与能量消耗增量之间的紧密联系。

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摘要

The involvement of metabolic energy in platelet responses was investigated by measuring the energy consumption during aggregation and secretion from dense, alpha- and acid-hydrolase-containing granules. Gel-filtered human platelets were stimulated with different amounts of thrombin (0.05-5.0 units X ml-1). At various stages during aggregation and secretion the energy consumption was measured from the changes in metabolic ATP and ADP following abrupt arrest of ATP resynthesis. Stimulation with 5 units of thrombin X ml-1 increased the energy consumption from 6.2 +/- 0.9 to 17.8 +/- 0.4 mumol of ATPeq. X min-1 X (10(11) platelets)-1 during the first 15 s. It decreased thereafter and returned to values found in resting cells after about 30 s. With 0.05 unit of thrombin X ml-1, the energy consumption accelerated more slowly and took at least 3 min before it normalized. A strong positive correlation was found between the velocities of the three secretion responses and the concurrent energy consumption (a) at different stages of the responses induced by a given dose of thrombin, and (b) at different secretion velocities initiated by different amounts of thrombin. When, at different stages of the responses, the extent of secretion was compared with the amount of energy that had been consumed, a strong linear correlation was found with the increment in energy consumption but not with the total energy consumption. This correlation was independent of the concentration of thrombin and indicated that complete secretion from dense, alpha- and acid-hydrolase-containing granules was paralleled by an increment of 4.0, 6.5 and 6.7 mumol of ATPeq. X (10(11) platelets)-1, respectively. An energy cost of 0.7 mumol of ATPeq. X (10(11) platelets)-1 was calculated for separate dense-granule secretion, whereas the combined alpha- and acid-hydrolase granule secretion required 5.3 mumol of ATPeq. X (10(11) platelets)-1. There was no correlation between energy consumption and optical aggregation. In contrast, the rate of single platelet disappearance, which is a measure for the early formation of small aggregates, correlated closely with the rate of energy consumption. Compared with secretion, however, the energy requirement of single platelet disappearance was minor, since 2mM-EDTA completely prevented this response but decreased the energy consumption only slightly. An increase of 0.5-1.0 mumol of ATPeq. X (10(11) platelets)-1 was seen before single platelet disappearance and the three secretion responses were initiated, indicating an increase in energy consuming processes that preceded these responses.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:代谢能参与血小板反应的方法是通过测量密集和含α-和酸水解酶的颗粒在聚集和分泌过程中的能量消耗来进行研究。用不同量的凝血酶(0.05-5.0单位X ml-1)刺激凝胶过滤的人血小板。在突然停止ATP重新合成后,通过代谢ATP和ADP的变化来测量能量在聚集和分泌的各个阶段。用5个单位的凝血酶X ml-1进行刺激,将能量消耗从6.2当量(0.9 +/- 0.9)增加到17.8 +/- 0.4摩尔(摩尔)ATPeq。 X min-1在最初的15 s内X(10(11)个血小板)-1此后降低,并在约30 s后恢复到静息细胞中发现的值。使用0.05单位的凝血酶X ml-1时,能量消耗加速更慢,并且至少需要3分钟才能恢复正常。在三种分泌反应的速度与并发能量消耗之间发现强烈的正相关性(a)在给定剂量的凝血酶诱导的反应的不同阶段,以及(b)在不同量的凝血酶引发的不同分泌速度下。当在响应的不同阶段,将分泌的程度与已消耗的能量进行比较时,发现能量消耗的增加与总能量消耗之间没有很强的线性相关性。这种相关性与凝血酶的浓度无关,表明从致密的,含α-和酸水解酶的颗粒中完全分泌的产物与ATPeq的4.0、6.5和6.7摩尔摩尔增加量平行。 X(10(11)血小板)-1。 ATPeq的能源成本为0.7摩尔。计算X(10(11)血小板)-1的单独致密颗粒分泌,而组合的α-和酸水解酶颗粒分泌需要5.3μmolATPeq。 X(10(11)个血小板)-1。能量消耗与光聚集之间没有相关性。相反,单个血小板消失的速率与能量消耗速率密切相关,该速率是小聚集体早期形成的一种度量。然而,与分泌相比,单个血小板消失的能量需求很小,因为2mM-EDTA完全阻止了这种反应,但仅略微降低了能量消耗。 ATPeq增加0.5-1.0摩尔。 X(10(11)血小板)-1出现在单个血小板消失之前,并且开始了三个分泌反应,表明这些反应之前的能量消耗过程有所增加(摘要截断了400个单词)

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