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Biomedical subjects

F Rendu

Publications and source records attributed to F Rendu.

At least 73 records · Page 4Linked to original sources

Effect of a collagen-derived octapeptide on phosphoinositide turnover and 43K protein phosphorylation in collagen-activated platelets.

A collagen-derived octapeptide KPGEPGPK which specifically inhibits the activation of platelets by collagen has been tested for its ability to affect the collagen-induced phosphoinositide breakdown and protein phosphorylations. Collagen produced a transient decrease followed by a rapid resynthesis of [32P]-phosphatidyl 4-5 bisphosphate (PIP2) and 4-mono phosphate (PIP). Octapeptide, at a concentration preventing aggregation but allowing shape change, did not impair the phosphoinositide breakdown, whereas the P43 phosphorylation was strongly inhibited. Higher concentrations of peptide which did not permit any shape change were needed to hinder the PIP2 and PIP decrease. Therefore, the octapeptide appears to affect early events of the collagen-induced platelet activation involving the P43 phosphorylation, independently of its effect on the receptor-stimulated phosphoinositide hydrolysis.

Blood Platelets↗

Hermansky-Pudlak platelets: further studies on release reaction and protein phosphorylations.

Platelets from a patient with the Hermansky-Pudlak syndrome were studied. These platelets had decreased amounts of serotonin and adenine nucleotides, and a decreased number of mepacrine-labeled dense bodies. beta-Thromboglobulin and acid hydrolases contained in alpha-granules and lysosomes respectively were present in normal amount. Platelets in platelet-rich plasma did not respond to collagen, but arachidonic acid and ionophore A 23187 induced normal aggregation and normal thromboxane (TX) synthesis. Alpha-granule release was found impaired and remained subnormal even with high doses of inducers. In response to thrombin aggregation, release and TX synthesis of isolated metrizamide gradient platelets were found at lower than normal levels. Phosphorylation of P20 and P43 proteins was normal. Only a combination of ADP plus thrombin could restore a normal aggregation, with normal alpha-granule and lysosome release and normal TX synthesis. These results indicated that in the absence of dense bodies: the release of other granules is impaired; the TX synthesis is delayed except when induced by arachidonic acid and A 23187 ionophore; the absence of dense bodies could be compensated for by the addition of ADP which restores the impaired release reaction and TX formation; and P20 and P43 polypeptides were phosphorylated as rapidly as those in normal platelets.

Adenine Nucleotides↗

Signal transduction in normal and pathological thrombin-stimulated human platelets.

Human blood platelets stimulated by thrombin undergo very rapid morphological changes, the most characteristic of which are pseudopod formation and granule centralization. These early changes in shape are accompanied by a transient decrease (30%) in phosphatidyl inositol 4,5-bisphosphate (PIP2) which occurs in the first 10 s after thrombin addition. Transient decreases in phosphatidyl inositol 4-phosphate (PIP) and phosphatidyl inositol (PI) occur later (20-30 s). These events lead to the formation of inositol 1,4,5-trisphosphate (IP3) and diacylglycerol (DG) and hence phosphatidate (PA). Two polypeptides are phosphorylated during the same time span: the myosin light chain (P20) and a 43 kDa protein (P43). Concomitant with these molecular changes, platelet 'release reaction' occurs, i.e., liberation of the different granule constituents into the external medium: the earliest concerns dense bodies which liberate adenine nucleotides, calcium and serotonin; alpha-granules then liberate adhesive and specific proteins and are followed by lysosomes which liberate hydrolases. Pathological platelets from patients with inherited disorders, presenting well-characterized and specific defects of either the platelet membrane (GT) or storage granules (GPS and HPS), have also been studied. The results obtained lead to the following conclusions: (1) the transducing system is normal in platelets unable to aggregate; (2) phosphorylation of P20 and P43 proteins can be complete with impaired release; and (3) when platelets lack alpha-granules the transducing system as well as the release of other granule populations are impaired. These results evidence the relationship between the absence of intraplatelet components and metabolic events.

Blood Platelet Disorders↗

Abnormal phosphoinositide metabolism and protein phosphorylation in platelets from a patient with the grey platelet syndrome.

Washed platelets isolated from one patient suffering from the inherited grey platelet syndrome were studied during thrombin-induced activation. The agonist-induced changes in (i) morphology, (ii) typical functional cell responses, (iii) membrane phospholipid metabolism and protein phosphorylation were studied and compared with the changes obtained with normal platelets. The morphology of the platelets as visualized by electron microscopy confirmed the almost total absence of intracellular alpha-granules and marked vacuolization. During thrombin stimulation the morphological changes were clearly delayed as compared to normal platelets, the granule centralization and aggregation occurred only 15 s after thrombin addition instead of 5 s in normal platelets. After 15 s, however, even though no alpha-granules were observed, a ring-like structure occurred centrally, indicating that they are not a prerequisite for this reaction. The whole release reaction, i.e. liberation of [14C]serotonin from dense granules and beta-N-acetylglucosaminidase activity from lysosomes, and the thromboxane synthesis were delayed and remained lower than in normal platelets. No thrombin-induced phosphatidyl 4,5-bisphosphate breakdown was measurable on 32P-prelabelled platelets although [32P]phosphatidate formation occurred normally. Phosphorylation time courses of myosin light chain (P20) and of protein P43 (mol wt 43,000) markedly differed from those of controls, being less than half of the normal during the first 15 s and remaining subnormal even after complete aggregation. These results suggest that in platelets devoid of alpha-granules a deficient transmembrane signalling system is likely responsible for the impaired physiological responses.

Blood Platelet Disorders↗

Further characterization of wheat germ agglutinin interaction with human platelets: exposure of fibrinogen receptors.

It was previously shown that Wheat germ agglutinin, (WGA)-induced platelet activation occurred when only 17% of the lectin binding sites were occupied on the platelet surface and WGA caused the release of a platelet constituent which in turn participates in the observed effect. We now further define the platelet activation induced by WGA: the lectin induces a binding of fibrinogen to specific surface receptors. 125I-fibrinogen binding increases with the WGA concentration from 5 to 15 micrograms/ml. Binding occurs without addition of exogenous calcium; its analysis demonstrated 54,000 sites with a Ka = 0.8 X 10(6) M-1. Addition of 1 mM Ca2+ enhances the 125I-fibrinogen binding and reveals a second class of sites with higher affinity (9200 sites, Ka = 0.17 X 10(8) M-1). This 125I-fibrinogen binding is totally abolished by EDTA, ATP and arginine, and inhibited by 75% by CP/CPK; cyclooxygenase inhibitors and PGE1 also reduce the fibrinogen binding. Thus the WGA-induced fibrinogen binding is release-dependent and responsible for the aggregation process but not for the agglutinating effect of the lectin.

Alprostadil↗

PDGF modifies phosphoinositide metabolism and inhibits aggregation and release in human platelets.

While platelet derived growth factor (PDGF) did not induce any platelet aggregation nor secretion, it modified the polyphosphoinositide metabolism of human platelets prelabeled with 32P-orthophosphate. We found a decrease of 32P associated with phosphatidylinositol 4,5 bisphosphate after 3 min, with parallel increase of 32P-phosphatidylinositol 4 phosphate and 32P-phosphatidylinositol using 100 ng/ml of PDGF. This modification was PDGF concentration dependent. PDGF inhibited thrombin and collagen induced platelet aggregation and 14C-serotonin release in a dose dependent manner, but was without effect when arachidonic acid was used. These results suggest that PDGF (i) stimulated the hydrolysis of polyphosphoinositides (ii) and could exert a negative feedback control on platelet activation induced by thrombin or collagen.

Arachidonic Acid↗

Thrombocytopenia with thrombocytopathy possibly related to abnormalities of intracellular Ca++ fluxes and followed by the development of leukaemia.

A patient is described who presented a thrombocytopenia with thrombocytopathy followed by the development of a leukaemia. The disorder was characterized by decreased aggregation in the presence of ADP, and a lack of aggregation in the presence of arachidonic acid, natural endoperoxide or collagen. In parallel, 14C-serotonin release was severely decreased or nil in response to these inducers. Thrombin induced a slightly decreased aggregation and a normal 14C-serotonin release. Thromboxane B2 (T X B2) synthesis was normal after stimulation by arachidonic acid, natural endoperoxide or thrombin showing a normal arachidonate metabolism. In addition, the mepacrine test showed no significant decrease of the number of dense bodies with an average of 4.6 per platelet (versus 5.4 +/- 0.8 sd in controls). Stimulation by ionophore A 23187 failed to induce aggregation, 14C-serotonin release, or T X B2 synthesis. Furthermore, in the presence of EDTA, A 23187 did not provoke activation as reflected by 14C-serotonin release or T X B2 synthesis. Thus, in this case of thrombocytopathy, the hypothesis of abnormal intracellular Ca++ fluxes responsible for the defective platelet release phenomenon, was suggested.

Adenosine Diphosphate↗

Platelet membrane molecular organization: relationship with membrane bound calcium.

The fatty acid spin label 5 nitroxide stearate has been used to determine the membrane organization changes induced by platelet aggregation. A decrease in order is observed with thrombin, even in the presence of EDTA, when aggregation is inhibited. Conversely, after aggregation by the calcium ionophore A23187 the rigidity of the phospholipids is not modified. These effects are discussed in relation to the release of membrane bound calcium induced by thrombin.

Blood Platelets↗

Change in the physical state of platelet plasma membranes upon ionophore A23187 activation. A fluorescence polarization study.

Human platelets were isolated and fluorescence-labelled by 1,6-diphenylhexatriene. Diphenylhexatriene was essentially localized in the plasma membrane, as indicated by trinitrobenzenesulfonate-quenching experiments. A decrease of the fluorescence polarization of diphenylhexatriene was observed upon ionophore A23187 addition in the absence of aggregation. 0.3 microM ionophore allowed to reach the maximum rate of the decrease of fluorescence polarization; it also maximally stimulated the light transmission change, the serotonin release and the thromboxane B2 synthesis. The amplitude of the fluorescence polarization decrease was maximum at platelet concentrations between 4 X 10(7) and 7 X 10(7)/ml. The presence of Ca2+ in the medium increased the rate constant of the polarization change. Chlorpromazine (60 microM) completely inhibited this transition, but at 30 microM its inhibitory effect was reversed by Ca2+. The membrane events implied in platelet activation very likely lead to fluidization of the plasma membrane, perhaps by its fusion with the membranes of internal granules which are relatively depleted of cholesterol. Ca2+ plays a central role in the triggering of the observed effects at the membrane level.

Blood Platelets↗

Serotonin release and phosphoinositide breakdown in thrombin-induced activation of human platelets.

The release reaction and the metabolism of inositol lipids were studied in parallel in washed human platelets following the activation by low doses of thrombin. The breakdown of phosphatidylinositol 4,5-bisphosphate (PI-P2) was accompanied by the release of serotonin. These events preceded the breakdown of the other phosphoinositides and the release of alpha-granules and lysosome constituents, respectively. The secretion of serotonin probably is triggered by products of thrombin-induced activation of the phospholipase C directed against PI-P2.

Blood Platelets↗

Molecular membrane organization in normal and pathological platelets: changes in inositide metabolism and membrane fluidity.

The role of platelet plasma membrane in mediating cellular response to external stimuli was investigated by studying phosphatidylinositol turnover and structural physical molecular alterations. Phosphoinositide turnover was evaluated by phosphatidylinositol breakdown and phosphatidic acid (PA) synthesis. The membrane structure was investigated by measuring fatty acid chain organization, flexibility and movements using the spin label method. When platelets are stimulated by thrombin, a rapid phosphatidylinositol bisphosphate (PIP2) breakdown is observed, accompanied by an immediate PA synthesis. At the same time a membrane-bound calcium liberation within the cell is revealed by the decrease in chlortetracycline fluorescence, and the dense granule constituent serotonin is released from the cell. These events result in disorganization of the platelet membrane as estimated by the decrease in order parameter. All these thrombin-induced effects occur in the presence of EDTA, thus being independent of external calcium and aggregation. By contrast ionophore A 23187 does not induce any PIP2 breakdown nor structural disorganization and the dense granule release measured at 10 seconds is only very weak. These results were confirmed by studies on pathological platelets in which PIP2 breakdown was normal when release was normal, such as in Glanzman thrombasthenia, or did not occur when no granule release was measurable as in Gray-platelet syndrome. It is suggested that membrane-bound calcium has a structural rather than a functional role.

Blood Platelet Disorders↗

Interaction of wheat germ agglutinin with human platelets: a model for studying platelet response.

Binding of wheat germ agglutinin (WGA) to human platelets and their activation were studied. The binding of fluoresceinyl-substituted WGA (F-WGA) was saturable, specific, reversible and cooperative. The apparent association constant (Ka) was 2.4 X 10(6) M-1. Activation of platelets was measured by change in light transmission (LT) (aggregation) and by assays of 14C-serotonin and beta-thromboglobulin (secretion). The maximum platelet activation was obtained with 15 micrograms/ml WGA. At this concentration only 17% of all available binding sites were occupied. Increasing the WGA concentration diminished the change in LT and the secretion from alpha granules but not from dense bodies. The addition of EDTA partially reduced the platelet aggregation without any effect on the secretion. Remaining LT change was insensitive to all metabolic inhibitors tested (CP/CPK, arginine, indomethacin, PGE1, chlorpromazine, colchicine and cytochalasin B). The secretion measured in the presence of EDTA was only reduced by preincubation with PGE1 and CPZ. Succinyl-WGA which only binds glucoconjugates containing GlcNAc did not induce any platelet activation, whereas limulin, which binds to glucoconjugates containing NeuAc did induce platelet agglutination and secretion. These results indicate that: (1) the platelet aggregation and secretion induced by WGA occur with only partial occupancy of the membrane binding sites by the lectin; (2) the platelet LT change is due in part to the agglutinating properties of the lectin bound to the platelet surface, and in another part to the aggregation reaction mediated by a platelet constituent secreted from the storage sites in response to the binding of the lectin.

Alprostadil↗

Triphosphoinositide breakdown and dense body release as the earliest events in thrombin-induced activation of human platelets.

The activation by thrombin of human platelets prelabelled with 32P induced a 30-40% decrease in 32P-triphosphoinositides (TPI) in the first 10 sec; the decrease in the other 32P-labelled phosphoinositides occurred by 20-30 sec. At 10 sec., the intensity of these effects was maximum with 0.2-0.4 U/ml thrombin. Under these conditions, 53, 20 and 15% of the dense granule, alpha-granule and lysosome constituents, respectively were released and thromboxane B2 synthesis reached only 10% of its maximum. Together with experiments carried out with chlorpromazine - or PGE1 - treated platelets, our results suggest the existence of a close relationship between TPI-breakdown and dense body release which appear to be the earliest events resulting from the activation of human platelets by thrombin.

Blood Platelets↗

Evidence that abnormal platelet functions in human Chédiak-Higashi syndrome are the result of a lack of dense bodies.

The structure and functions of platelets from three patients with the Chédiak-Higashi syndrome were examined. Electron-microscopic observations revealed a large reduction in the number of serotonin-storage granules or dense bodies but otherwise normal ultrastructure and normal amounts of alpha-granules and catalase-positive granules. The number of mepacrine-labeled granules was also reduced. Platelets contained normal amounts of beta-thromboglobulin and Platelet Factor 4. The platelet release reaction studied with thrombin as the inducer was impaired. The serotonin uptake by the patients' platelets was low and not inhibited by reserpine, and its metabolism was increased. These findings clearly show that platelets from human Chédiak-Higashi syndrome are deficient in the storage pool of dense granule substances and suggest that this granule defect has an influence on the release mechanism of other granule constituents.

Blood Platelets↗

Initial characterization of human platelet mepacrine-labelled granules isolated using a short metrizamide gradient.

A method for the purification of human platelet mepacrine-labelled granules is described. Characterization of these isolated granules allowed them to be identified as the serotonin storage organelles or dense bodies. Each step of the purification procedure has been controlled in order to obtain a minimum of leakage of the granule content during initial isolation of the platelets from the blood, the platelet washing procedures, and platelet lysis and the subcellular separation. A key step in the procedure was the centrifugation of the labelled granules across a short, discontinuous metrizamide gradient. The pellet of isolated mepacrine-fluorescent granules consisted almost entirely of granules with the typical appearance of dense bodies, as shown by electron microscopy, and was relatively free from membranes and other granule populations as evaluated by the presence of the different markers (tritiated lectin, beta-glucuronidase, monoamine oxidase, platelet factor 4). The method is simple, reproducible and allows the highest enrichment in dense bodies obtained hitherto with human platelets: x 177 in calcium and x 115 in [14C]serotonin after fractionation of [14C]serotonin-labelled whole platelets. Functional studies performed with the isolated granules showed that they rapidly accumulated [14C]serotonin.

Adenosine Triphosphate↗

Further investigations on Bernard-Soulier platelet abnormalities.

Platelets from patients with the BSS make an interesting model for the study of 5-HT uptake, with their abnormal morphology including a defect in the plasma membrane GP I sialoglycoproteins (GP lb and glycocalicin), increased density in relation to an increased DB content, and increased size as a result of an abnormal shape change. The "apparent" kinetics of 5-HT incorporation by BSS platelets as measured with [3H]5-HT (0.2 to 2 micro M) were greatly modified: the VM was increased, but a high KM was needed. With a 5-HT concentration corresponding to the control platelet KM, twice as much 5-HT storage was taken up by BSS platelets as by normal platelets. The BSS platelets capacity for 5-HT storage as measure with [14C]5-HT (3 to 54 micro M) was increased up to to fivefold but normally inhibited b reserpine. The metabolism of platelet 5-HT was neither more rapid nor increased. The results, which further define the BSS platelet abnormalities, strongly suggest (1) a modification of the 5-HT transport process at the plasma membrane level and (2) an increased capacity of the platelets to accumulate 5-HT due to the increased DB content that parallels the increased platelet size. The possible relation between these two phenomena is discussed.

Blood Platelet Disorders↗

Gray platelet syndrome: alpha-granule deficiency. Its influence on platelet function.

The ultrastructure, cytochemistry, biochemistry, and functions of platelets from two patients with the familial gray platelet syndrome are described. Ultrastructural studies showed a lack of alpha-granules in the megakaryocytes in the vicinity of a marrow myelofibrosis and/or in platelets. A normal number of mitochondria and a slight increase of dense bodies was confirmed by labeling the whole patient with mepacrine. Platelet peroxidase (in the dense tubular system) and catalase-positive granules (revealed by the cytochemistry) were present. Platelets from both patients had severe deficiency of beta TG either after tritonization (less than 4% of normal) or thrombin treatment (less than 15% of normal), and the plasma beta TG levels were slightly increased. Functional studies of these platelets showed an uptake of [14C]5HT inhibited by reserpine similar to that in the control platelets. Thromboxane formation was within normal limits in the presence of arachidonic acid, ADP, collagen, or ionophore A23187, indicating that (1) the cyclooxygenase/thromboxane synthetase systems were not altered and (2) the phospholipase activities were not impaired. Although the platelet adhesion to prepolymerized fibrillar type III collagen and the ADP-, arachidonic acid-, and ionophore A23187-mediated aggregations were apparently normal, in every case the release of [14C]5HT was either at the low side of the normal range or decreased. This abnormality was increased when collagen or thrombin was added to either PRP or washed platelets from both patients, where at the same time, the aggregation and the release were markedly reduced. The results suggest that alpha-granules or their content has an influence on not only the platelet aggregation but also the dense bodies involved in the [14C]5HT release reaction.

Adolescent↗