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Biomedical subjects

G Gorter

Publications and source records attributed to G Gorter.

At least 37 records · Page 2Linked to original sources

Stimulation of human platelets by collagen occurs by a Na+/H+ exchanger independent mechanism.

In stimulated human platelets dense-granule secretion in response to the 'weak agonists' ADP, adrenaline, platelet activating factor and low concentrations of thrombin as well as Ca2+ mobilisation in response to thrombin are enhanced by a Na+/H+ exchanger. In the present study the role of this antiport in collagen stimulated human platelets was examined. While stimulation of platelets loaded with the fluorescent intracellular pH-sensitive dye, bis-carboxyethyl-5-(6)-carboxyfluorescein (BCECF) with thrombin resulted in the activation of the Na+/H+ exchanger, activation of this antiport did not occur in collagen-stimulated platelets. The lack of antiport activity in response to collagen using BCECF-loaded platelets correlated with the lack of any functional role of the antiport in collagen stimulated platelets. In the presence of a Na+/H+ exchange inhibitor, ethylisopropylamiloride, neither collagen-induced platelet aggregation or dense-granule secretion was affected. Furthermore, while the removal of extracellular Na+ (Na+ext), a condition that also prevents activation of the antiport, inhibited dense-granule secretion in response to a low concentration of thrombin, collagen-induced secretion was potentiated. This potentiatory effect could not be attributed to changes in either the membrane potential or in collagen-induced phospholipase C or protein kinase C activity. The present results indicate that in contrast to the 'weak agonists' (1) collagen-induced platelet activation does not require activation of the Na+/H+ exchanger and (2) Na+ext per se is an inhibitor of collagen-induced secretion.

Blood Platelets↗

Inhibition of Na+/H+ exchange reduces Ca2+ mobilization without affecting the initial cleavage of phosphatidylinositol 4,5-bisphosphate in thrombin-stimulated platelets.

Stimulation of human platelets increases cytoplasmic pH (pHi) via activation of Na+/H+ exchange. We have determined the effect of inhibiting Na+/H+ exchange on (i) thrombin-induced Ca2+ mobilization and (ii) turnover of 32P-labelled phospholipids. Blocking Na+/H+ exchange by removal of extracellular Na+ or by ethylisopropylamiloride (EIPA) inhibited Ca2+ mobilization induced by 0.2 U/ml thrombin, whereas increasing pHi by NH4Cl enhanced the thrombin-induced increase in cytosolic free Ca2+. The effect of EIPA was bypassed after increasing pHi by moneasin. The thrombin-induced cleavage of phosphatidylinositol 4,5-bisphosphate (PIP2) was unaffected by treatments that blocked Na+/H+ exchange or increased pHi. It is concluded that activation of Na+/H+ exchange is a prerequisite for Ca2+ mobilization in human platelets but not for the stimulus-induced hydrolysis of PIP2.

Amiloride↗

Stimulus-aggregation coupling in platelets activated with PAF-acether.

Contrary to most agonists, platelet-activating factor (PAF-acether) induces a more pronounced aggregation at 22 degrees C than at 37 degrees C. A possible explanation was sought in the mechanism that couples the PAF-acether-receptor complex with exposure and occupation of fibrinogen binding sites. Comparison of studies performed at 37 degrees C with those at 22 degrees C revealed: a faster binding of [3H]PAF-acether to its receptors; more accumulation of 32P-labelled phosphatidylinositol 4-monophosphate and a slower but more abundant formation of phosphatidic acid that lasted for 5 min; a 1.4-fold increase in phosphorylation of the Mr 47,000 protein and a 2-fold increase in phosphorylation of the myosin light chain. In contrast, less secretion occurred and less [32P]phosphatidylinositol accumulated at 22 degrees C than at 37 degrees C, and also the increase in cytosolic Ca2+ content and the formation of thromboxane B2 were considerably lower. No differences were found in [32P]phosphatidylinositol 4,5-bisphosphate formation and arachidonate metabolism. Fibrinogen binding studies revealed two types of binding at both temperatures, a high-affinity and a low-affinity binding. There were 6-fold more low-affinity binding sites at 22 degrees C than at 37 degrees C, whereas high-affinity binding did not change. These data suggest that the better aggregation found at 22 degrees C is the result of exposure of an increased number of fibrinogen binding sites. The increased protein phosphorylation and phosphatidic acid accumulation and the faster binding of PAF-acether to its receptors which accompany the better aggregation responses at 22 degrees C suggest that these processes are involved in the regulation of exposure of fibrinogen binding sites.

Arachidonic Acid↗

The energetics of early platelet responses. Energy consumption during shape change and aggregation with special reference to protein phosphorylation and the polyphosphoinositide cycle.

Among the different platelet responses, secretion requires the greatest amount of metabolic energy. The velocities of dense, alpha- and acid hydrolase granule secretion vary in parallel with the increase in energy consumption seen in thrombin-stimulated cells. This covariance is preceded by a phase in which energy consumption is increased without the extracellular appearance of secretion markers. By treating the platelets with thrombin and hirudin we have stimulated the platelets for short intervals and succeeded in separating shape change, single platelet disappearance and secretion to a great extent. In this report we show that the early increase in energy consumption reflects the energy requirement of aggregation but not of shape change. The cost of 100% of single platelet disappearance is 2.8 mumol of ATPeq. X (10(11) platelets)-1. Concurrent analysis of phosphorylation of Mr 20 000 and 47 000 proteins and of 32P-labelled phosphatidylinositol metabolites led to the following observations. Firstly, shape change is neither accompanied by an increase in protein phosphorylation nor by changes in the steady state levels of 32P-labelled phosphatidylinositol metabolites. Secondly, when aggregation occurs both proteins are phosphorylated, but the phosphatidylinositol metabolites do not change. Thirdly, when secretion follows, more phosphorylation of the Mr 47 000 protein occurs and initially only phosphatidic acid accumulates. At a later stage of the secretion responses, more protein phosphorylation and phosphatidic acid accumulation become evident, and are now accompanied by alterations in the steady state levels of 32P-labelled (poly)phosphoinositides. Hence, the early increase in energy consumption coincides with protein phosphorylation and, at a later stage, with alterations in (poly)phosphoinositides metabolites. This demonstrates that metabolic energy is directly involved in stimulus-response coupling in aggregating platelets.

Blood Platelets↗

Platelet functions and energy metabolism in a patient with hexokinase deficiency.

We have studied the regeneration of adenosine triphosphate (ATP) in the glycolytic pathway in platelets with a 75% reduction in hexokinase (HK) activity and have investigated aggregation and Ca2+ secretion. HK-deficient platelets had a normal glycolytic flux in the resting state, but responded insufficiently to stimulation with thrombin (5 U/ml). In contrast, glycogen contents and glycogenolysis were normal. When the metabolic adenine nucleotides were labeled with 14C-adenine, the patient's platelets showed a normal adenylate energy charge and a normal level of 14C-ATP. However, the inhibitor of mitochondrial energy generation, CN-, induced a weaker fall in 14C-ATP in the patient's platelets than in the controls. Analysis of secretion markers revealed decreased amounts of granule-bound ATP and secretable Ca2+, whereas granule-bound adenosine diphosphate (ADP), beta-thromboglobulin, N-acetyl-beta-D-glucosaminidase, and beta-glucuronidase were within the normal range. Aggregation and Ca2+ secretion induced by 5 U/ml thrombin were normal and were not changed in the presence of inhibitors of mitochondrial and glycogenolytic energy generation. Aggregation was also normal at 0.1 U/ml thrombin and was independent of these inhibitors, but Ca2+ secretion was greatly impaired when mitochondrial and glycogenolytic ATP resynthesis was abolished. These findings indicate that a severe reduction in HK activity causes insufficient acceleration of the glycolytic flux during stimulation with thrombin. This leads to impaired dense granule secretion in conditions where secretion depends on concurrent ATP resynthesis and glycolysis is rate limiting.

Adenosine Triphosphate↗

Close correlation between platelet responses and adenylate energy charge during transient substrate depletion.

The relation between availability of metabolic energy and thrombin-induced platelet aggregation and secretion was investigated in a system of transient substrate depletion followed by restoration of ATP resynthesis. Substrate depletion induced a fall in the concentration of metabolic ATP and in the adenylate energy charge and a concurrent decline in aggregation and secretion of dense and alpha-granule contents. Restoration of energy generation completely restored the adenylate energy charge and restored aggregation and secretion, but led to incomplete recovery of the ATP concentration. A close correlation between the adenylate energy charge and aggregation and between the adenylate energy charge and the secretion of dense and alpha-granule contents could be demonstrated. No such correlation existed between these responses and the concentration of ATP. These results show that the adenylate energy charge monitors an energetic condition which is crucial for preservation of platelet aggregation and secretion of dense and alpha-granule contents.

Adenine Nucleotides↗

Properties of PAF-acether-induced platelet aggregation and secretion. Studies in gel-filtered human platelets.

Human platelets rapidly lose their responsiveness to PAF-acether after blood collection. We collected blood from fasting donors and prepared gel-filtered platelets that remained responsive to PAF-acether for about 6 hours. Log-dose response studies showed biphasic aggregation between 20 and 100 nM PAF-acether with secretion of dense-, alpha- and lysosomal granule contents during the second wave of aggregation. Between 0.2 and 10 nM PAF-acether aggregation was weak and no secretion occurred whereas 300 nM PAF-acether or more induced maximal aggregation and secretion. Secretion, however, was never more than 70, 55, and 30% of maximal secretable amount of 5HT, beta TG and beta N, respectively. Aggregation and secretion were enhanced by fibrinogen (optimal concentration 0.3-0.7 g.1(-1)), required Ca2+ or Mg2+ but were inhibited when Mg2+ or Ca2+ were present at a concentration of 2 mM or more. These data show that human platelets are almost equally sensitive to PAF-acether as rabbit platelets, and respond with incomplete secretion of dense-, alpha- and lysosomal granule contents.

Acetylglucosaminidase↗

A novel technique for rapid determination of energy consumption in platelets. Demonstration of different energy consumption associated with three secretory responses.

A novel method has been developed for rapid and quantitative determination of the rate of energy consumption in platelets. In platelets suspended in a cyanide-containing medium. ATP resynthesis is abruptly blocked by addition of 2-deoxyglucose and D-glucono-1,5-lactone. We demonstrate that the subsequent changes in the levels of cytoplasmic ATP and ADP reflect the velocity of energy consumption in the platelets immediately before addition of the inhibitors. Despite the arrest in ATP resynthesis the platelets remain responsive to stimulation by thrombin (5 units x ml-1) which triggers the secretion of the contents of dense, alpha- and acid hydrolase granules. Unstimulated platelets were found to consume about 3.5 and 0.5 mumol of ATP equivalents x min-1 x (10(11) cells)-1 at 37 degrees C and 15 degrees C, respectively; the thrombin-treated platelets consumed respectively 16 and 2 mumol of ATP equivalents x min-1 x (10(11) cells)-1 at these temperatures. When the velocity of energy consumption was varied by (a) changing the temperature and (b) preincubation with glyco(geno)lytic inhibitors, it was found to be linearly related to the initial rate of secretion from the three types of granules. The precise nature of this relationship differed between the three types of secretion responses and indicated an increasing requirement for metabolic energy for secretion from the three types of granules in the order: dense granule less than alpha-granule less than acid hydrolase granule. The results obtained with changes in temperature were superimposable on those obtained with the glyco(geno)lytic inhibitors for dense granule secretion and alpha-granule secretion, suggesting an apparent coupling between energy consumption and the rate of these secretion responses. The rate of secretion of acid hydrolase was always higher when energy consumption was varied by temperature changes than when glyco(geno)lytic inhibitors were used, probably as a result of metabolic changes prior to induction of secretion. On the basis of these experiments, we calculated an incremental energy consumption during complete secretion of dense, alpha- and acid hydrolase granule contents of 2.5, 4.2 and 6.7 mumol of ATP equivalents x (10(11) platelets)-1, respectively.

Adenosine Triphosphate↗

ATP-ADP compartmentation in storage pool deficient platelets: correlation between granule-bound ADP and the bleeding time.

Platelets contain two major compartments of ATP and ADP, the cytosol and the dense granules. We separated the two compartments by controlled digitonin-induced cell lysis and measured both fractions directly in the platelets of 16 patients with storage pool deficiency. The total contents of ATP and ADP in the platelets of these patients was significantly lower than in normal controls. This was primarily caused by decreased amounts of ATP and ADP in the granule compartment, but also cytosolic ADP was low in these patients. In contrast, cytosolic ATP was not significantly decreased. The lower the amount of granule-bound ATP and ADP, the longer was the bleeding time in these patients. The best correlation was found with granule ADP. These data may indicate that ADP stored in platelet dense granules plays a role in the arrest of bleeding.

Adenosine Diphosphate↗

Kinetic analysis of alpha-granule secretion by platelets. A methodological report.

A method is described for the kinetic measurement of alpha-granule secretion by platelets. The method uses formaldehyde as a secretion-blocking reagent. This treatment alters the antigenecity of beta-thromboglobulin but not of Platelet Factor 4, both measured with commercially available reagents. Evidence is shown that this formaldehyde effect does not alter the secretion kinetics when the data are expressed as a percentage of a similarly treated reference sample. The method shows that following stimulation with thrombin or A 23187 alpha-granule secretion is much slower than dense granule secretion.

Blood Platelets↗

Extreme deficiency of L-type pyruvate kinase with moderate clinical expression.

In the erythrocytes and liver of a patient with hereditary non-spherocytic hemolytic anemia and increased serum aminotransferases, almost complete deficiency of L-type pyruvate kinase was detected. The parents of the patient are second cousins and the pyruvate kinase activity in their erythrocytes was decreased to about half normal values. Pyruvate kinase from the patient is characterized by extreme lability. Pyruvate kinase from the parents' red cells showed no molecular abnormalities. No cross-reactive material could be precipitated with a monospecific antibody raised against L-type pyruvate kinase in the patient's erythrocytes. In the red cells of the parents a decreased amount of cross-reactive material against pyruvate kinase antibodies was found, indicating that the lowered pyruvate kinase activity in the erythrocytes of the parents is caused by a decreased level of the pyruvate kinase protein. In the liver of the patient no L-type pyruvate kinase activity and no immunologically recognizable L-type pyruvate kinase could be detected. The increased lability of the enzyme protein may explain the low residual activity. However, this decreased activity is shown to be sufficient to perform a normal glycolytic flux resulting only in moderate clinical expression.

Adult↗

The Wiskott-Aldrich syndrome: studies on a possible defect in mitochondrial ATP resynthesis in platelets.

A possible defect in mitochondrial ATP resynthesis in platelets has been used for detection of Wiskott-Aldrich syndrome carriers (Shapiro et al, 1978). The detection was based on an abnormal adrenaline-induced platelet aggregation under conditions that only the mitochondria provide metabolic energy. We evaluated the test and found false negative and false positive results which raised doubts about the applicability of the test and the nature of the underlying defect. Direct analysis of mitochondrial ATP regeneration in patients and carriers showed an impaired mitochondrial energy production which was insufficient to maintain ATP homeostasis when glycolytic energy production was inhibited. Also abnormal was the fall in metabolic ATP concentration during stimulation with adrenaline and especially with thrombin when the platelets were incubated in glucose-free medium. These data provide direct evidence for a regulation defect in mitochondrial ATP resynthesis in platelets of patients and carriers with Wiskott-Aldrich syndrome.

Adenosine Triphosphate↗

Evaluation of platelet tests for measurement of cell integrity.

Various tests were evaluated for their capacity to differentiate between platelet suspensions with different degrees of cell damage. Those suspensions were prepared by simultaneous isolation of platelets from the same platelet-rich plasma (PRP) using the following procedures: 1. centrifugation at 4 degrees C with EDTA 2. gel filtration in Tangen's buffer 3. gel filtration in Ca2+-free Tyrode's soltuion 4. gel filtration in Ca2+-free Tyrode followed by dehydration against polyethylene glycol 20,000 and 5. albumin density gradient centrifugation. In these suspensions and in the original PRP the following parameters were studied: 1. morphology; 2. aggregability upon ADP addition; 3. platelet factor 3 availability; 4. uptake of 14C-serotonin and 3H-adenine; 5. metabolism of 3H-adenine and adenylate energy charge; 6. endogenous total ATP, ADP and serotonin and 7. lactate dehydrogenase (LDH) activity. Quantitation of pseudopod formation in the light or electron microscope and log dose response studies for ADP-induced aggregation proved to be the most sensitive and reproducible of the tests studied. Additional information could be obtained from measurement of the 3H-label in the ATP and hypoxanthine-inosine fractions and calculation of the adenylate energy charge. Determination of platelet factor 3 availability or uptake studies of 14C-serotonin and 3H-adenine were less suitable for discriminating between cell suspensions. Data for total ATP and serotonin concentrations and LDH activity differed between the cell suspensions but instead of detecting various degrees of cell damage they reflected alterations in platelet population caused by the isolation procedures.

Adenine↗