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Platelet-activating factor (PAF) is a phospholipid mediator, released by basophils, macrophages and neutrophils under immunological and non immunological stimuli. It aggregates platelets and liberates their vasoactive contents. We studied the "spontaneous" release of PAF from hog blood leukocytes : optimal conditions were 22 degrees C, pH 9.5 in BSA and Ca2+-containing Tyrode's. This release was inhibited by the Ca2+-chelating agent, EDTA, and by the phospholipase A2 inhibitor, bromophenacyl bromide. Disruption of the cells did not yield PAF, indicating that it is not a "preformed" mediator. A preparative procedure for the extraction and purification of bulk quantities of PAF was developed. Purification was performed by silicic acid columns followed by high pressure liquid chromatography. The active fraction was eluted between sphingomyelin and lysophosphatidylcholine. The PAF purest fractions were still contaminated with these phospholipids as shown by thin layer chromatography and chemical ionization mass spectrometry. PAF activity was not affected by treatment with diazomethane, acetylation or hydrogenation. Our results combined with those obtained from our previous studies of the PAF structure using specific phospholipases indicate that PAF is a glycero-phospholipid devoid of ester function at position 1. This allowed us to establish precise criteria to distinguish PAF from other aggregating agents.  相似文献   
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Investigations have been carried out on the influence of the phospholipid composition and the physicochemical properties of rat liver plasma membranes on the endogenous activity of membrane-bound phospholipase A2. The membrane phospholipid composition was modified by the incorporation of different phospholipids in the lipid bilayer by the aid of lipid transfer proteins. The results indicate that the endogenous activity of phospholipase A2 in liver plasma membranes depends upon membrane fluidity and not upon the presence of a specific phospholipid in the enzyme's microenvironment.  相似文献   
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Prothrombin activation complex is located at a phospholipid surface on activated platelets. To see whether the thrombin domain of the molecule plays a role in the interaction with lipids, we investigated the direct interaction of human α-thrombin and its precursor prethrombin 2 with phospholipid monolayers of varous compositions (PS/PC). Adsorption of the labeled proteins was determined by surface radioactive measurements. Penetrations of the proteins in the lipid layer was inferred from capacitance variation of the monolayer measured by a palarography. Disulfide bridges reduced at the electrode were determined by cycle voltametry.In all the cases studied, although in different manners thrombin was found both to adsorb and penetrate the lipid layer, whereas prethrombin 2 did not penetrate pure phosphatidylcholine (PC). In the case of thrombin but not of prethrombin 2, penetration is accompanied by S-S reduction which is maximum at 10 per cent of phosphatidylserine (PS). This indicate a different orientation for prethrombin 2 and thrombin in the lipid layer. This observation might be of importance for the comprehension of the architecture of the prothrombin might be of for the regulation of thrombin formation within the complex.  相似文献   
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The effects of whole-body gamma irradiation (8.4 Gy) were studied on arachidonic acid (AA) metabolism in rats' blood platelets, from day D + 1 to day D + 10 after irradiation. AA conversion into thromboxane B2 (TxB2) increased at D + 1 and then gradually decreased to very low values from D + 7 to D + 10. This decrease in the conversion of exogenous AA into TxB2 was due to a lower AA incorporation into platelets and not to a decrease of cyclooxygenase and thromboxane-synthetase activities. AA incorporation into membrane phospholipids of blood platelets was much more decreased than AA incorporation into whole platelets; moreover, the lipid composition of the platelet membranes was markedly modified after irradiation, which must have resulted in structural and functional changes in these membranes; from these effects of whole-body gamma irradiation on platelets, the latter's membranes appeared as a major site of in vivo radiation damage in these cells.  相似文献   
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