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Debabrata Dash

Publications and source records attributed to Debabrata Dash.

9 recordsLinked to original sources

Late signaling in the activated platelets upregulates tyrosine phosphatase SHP1 and impairs platelet adhesive functions: Regulation by calcium and Src kinase.

Sustained stimulation of platelets with protease-activated receptor agonists in presence of extracellular calcium was associated with tyrosine dephosphorylation of specific proteins of relative mobilities 35, 67, and 75 kDa. From phosphatase assays and inhibitor studies SHP1, a Src homology 2 (SH2) domain-containing tyrosine phosphatase expressed abundantly in hemopoietic cells, was found to be upregulated in platelets between 25 and 30 min following thrombin stimulation. Concomitantly, SHP1 was tyrosine phosphorylated by, and coprecipitated with, Src tyrosine kinase. SHP1 activation, association with Src and dephosphorylation of specific proteins were dependent on extracellular calcium and maintenance of a higher cytosolic calcium plateau. There was progressive impairment of platelet functions like aggregability and clot retraction, associated with downregulation of fibrinogen-binding affinity of integrin alpha(IIb)beta(3), in the platelets exposed to thrombin for 45 min. This could reflect the late physiological changes in platelets when the cells are consistently exposed to stimulatory signals under thrombogenic environment in vivo.

Blood Platelets↗

Stent strut fracture-induced restenosis in a bifurcation lesion treated with the crush stenting technique.

Percutaneous treatment of a bifurcation lesion still shows a significant complication rate, mainly because of restenosis at the ostial site of the side branch vessel. Different techniques, such as V-stenting, culottes-stenting or crush stenting, allow full ostial coverage and may therefore achieve uniform drug distribution within the lesion. The crush technique results in a strong mechanical constraint on the side branch stent. A case of stent strut fracture-induced restenosis in a bifurcation lesion treated with the crush stenting technique is described.

Aged↗

Spectrum of beta-thalassemia mutations in North Indian states: a beta-thalassemia trait with two mutations in cis.

OBJECTIVES: To study the prevalence of beta-thalassemia mutations in two North Indian states. DESIGN AND METHODS: Mutation(s) were analyzed in 62 patients using 10 sets of allele-specific primers. RESULTS: Four mutations [IVS1 nt5 (G --> C), F.S 8/9 (+G), F.S 41/42 (-TCTT) and del 619 bp] were found to constitute 94.1% of the total alleles studied. Prevalence of IVS1 nt5 (G --> C) was the highest, closely followed by F.S 8/9 (+G). The latter was thus unusually high and not consistent with earlier reports. Two mutations in cis were detected in one carrier of the thalassemia trait and in his father, thus signifying the possibility of vertical transmission of mutations in a single beta-globin allele. CONCLUSIONS: F.S 8/9 (+G), as well as IVS1 nt5 (G --> C), are the major mutations in Indian states; however, the possibility of multiple mutations in cis in a fetus with the thalassemia trait has to be considered in a prenatal screening program.

Alleles↗

Sustained stimulation of platelet thrombin receptor is associated with tyrosine dephosphorylation of a novel p67 peptide in a manner regulated by extracellular calcium.

Signaling pathways elicited by protease-activated receptor-1 (PAR-1) agonists, thrombin receptor-activating peptide (TRAP) and thrombin, are markedly different. Here we show that TRAP-induced disaggregation of platelets is a function of extracellular calcium. Chelation of calcium with EGTA after the onset of aggregation precluded subsequent destabilization of the aggregates in TRAP-stimulated platelets, whereas disaggregation was not observed in the platelets stimulated with thrombin. TRAP-induced disaggregation was independent of the activity of the calcium-dependent thiol protease, calpain. Inhibition of phosphoinositide 3-kinase activity provoked further destabilization of the platelet aggregates in the presence of calcium; however, EGTA attenuated this effect. Activation of protein kinase C (PKC) by phorbol ester prevented disaggregation of the TRAP-stimulated platelets independent of the extracellular calcium. Two proteins of relative mobilities 67 and 75 kD were found to be significantly dephosphorylated on tyrosine in calcium-pretreated platelets as compared to the EGTA-treated platelets following continued stimulation with either TRAP or thrombin for 15 min. Inhibition of phosphoinositide 3-kinase by two pharmacologically independent inhibitors also caused dephosphorylation of p67, which was completely abrogated by chelation of extracellular calcium. Platelet activation by phorbol ester was not associated with disaggregation, although dephosphorylation of p67 was induced under this condition. SHP-1, an abundant tyrosine phosphatase in platelets, co-migrated with the p67 protein and co-localized to the actin-based cytoskeleton of aggregated platelets; however, its identity with p67 was ruled out from immunoprecipitation studies.

Blood Platelets↗

Platelet storage under in vitro condition is associated with calcium-dependent apoptosis-like lesions and novel reorganization in platelet cytoskeleton.

Platelets are cleared from circulation after a life span of 8-10 days. The molecular mechanisms underlying platelet senescence remain poorly characterized. Here we report that, progressive functional impairment in the platelets incubated in vitro in a plasma-free isotonic medium for up to 24 h at 37 degrees C is associated with release of cytochrome c from platelet mitochondria and cleavage of procaspase-9, but without evidence of caspase-3 activation. Concomitantly, there was proteolysis of survival proteins like focal adhesion kinase, Src, gelsolin, and specific cytoskeleton-associated peptides, in a manner regulated by extracellular calcium and calpain activity. Cytoskeleton played a critical role as evidenced from the association of these proteins and their degradation products, as well as procaspase-3 and the actin regulatory small GTPase, CDC42Hs, with the cytoskeleton of the stored platelets. The cytoskeletal enrichment with specific proteins was not associated with increase in the content of F-actin and was cytochalasin-resistant, thus signifying a novel mechanism of interaction of the translocating proteins with the pre-existing cytoskeleton. There was progressive exposure of phosphatidylserine on the outer leaflet of platelet membrane and specific electron microscopic changes suggestive of apoptotic lesions. Based on these observations we discuss the caspase-independent but calpain-mediated signaling events in the stored platelets resembling the features of apoptosis in the nucleated cells.

Apoptosis↗

Regulation of postaggregation events induced by protease-activated receptor 1 ligation in human platelets: evidence of differential signaling pathways.

In a physiological milieu platelets continue to be exposed to agonists long after clot formation. We studied the regulation of postaggregation events consequent on protease-activated receptor (PAR) 1 ligation with either thrombin or the thrombin receptor-activating peptide (TRAP). Stimulation with TRAP (20 microM) but not with thrombin (1 U/ml) for 15 min evoked platelet disaggregation by about 30% and downregulation of high-affinity fibrinogen binding sites on integrin alpha(IIb)beta(3) to nearly prestimulation levels. Concurrently, only TRAP disorganized the actin-based cytoskeleton, with decrease in the cytoskeletal content of focal contact-associated proteins like integrin alpha(IIb)beta(3), Src, and focal adhesion kinase (FAK). While protein tyrosine kinases were activated during the initial period of platelet aggregation with either agonist, stimulation of protein tyrosine phosphatases determined the successive phase of reduced phosphotyrosine content. SHP-1, an abundant protein tyrosine phosphatase in the platelets, was tyrosine phosphorylated on challenge of PAR-1 and coprecipitated with two unidentified tyrosine phosphorylated proteins of 140 and 60 kDa; in addition, SHP-1 tyrosine phosphorylation (which is associated with enhanced phosphatase activity) was sustained until 15 min. Activity of calpain was upregulated following incubation with thrombin and not with TRAP. Collectively, these data suggest that signaling pathways elicited by PAR-1 agonists thrombin and TRAP are markedly different, which could have important implications on late platelet responses.

Blood Platelets↗

Changes in membrane microenvironment and signal transduction in platelets from NIDDM patients-a pilot study.

BACKGROUND: Non-insulin-dependent diabetes mellitus (NIDDM) is characterized by the presence of abnormally active platelets in the circulation, leading to increased incidence of thrombotic complications. In this study, we have attempted to understand the pathophysiology of the platelets in NIDDM. METHODS: Platelet aggregation was induced by thrombin receptor-activating peptide or epinephrine. Membrane fluidity was derived from the steady-state fluorescence anisotropy of diphenylhexatriene incorporated in the membrane. The phosphotyrosine content of the platelet proteins was probed using specific monoclonal antibodies. The extent of calpain activity was assessed from the proteolysis of calpain substrates. RESULTS: Aggregation was significantly enhanced (p<0.001) in the platelets obtained from the cases of NIDDM. Anisotropy measurements reflected a significant increase in the microviscosity of platelet membranes from 3.315 (+/-0.103) in the control to 4.153 (+/-0.119) in NIDDM. Proteins of relative mobilities of 131, 100, 47 and 38 kDa were found to remain phosphorylated on tyrosine in the resting platelets obtained from NIDDM patients, while they were not phosphorylated in the control counterparts. This was associated with heightened activity of the calcium-dependent thiol protease, calpain, in NIDDM. CONCLUSIONS: Taken together, these data indicated significant changes in the signaling mechanism in the platelets obtained from NIDDM, which could lead to platelet hyperactivity in this disease.

Adult↗

Factor VIII gene polymorphisms in North Indian population: a consensus algorithm for carrier analysis of hemophilia A.

BACKGROUND: Hemophilia A, an X-linked recessive disorder, has the prevalence of 1 male per 7000 of the male population in the Northern states of India. The aim of the present study was to analyze the polymorphisms of the factor VIII gene in a sample population comprised of 22 families (112 persons) in order to formulate an algorithm that would be informative and accurate, yet cost-effective for carrier diagnosis. METHODS: Polymerase chain reaction was used to study the polymorphisms of two intragenic restriction fragment length polymorphic sites (recognized by BclI and HindIII) and an extragenic variable number tandem repeat (VNTR) locus (St14). RESULTS: Fifty-eight percent of the women tested were heterozygous for the BclI restriction fragment length polymorphism (RFLP) (significantly high compared to earlier reports), signifying the usefulness of this marker in carrier detection. About 64% of the families from the target population could be diagnosed using this marker alone. The other intragenic HindIII RFLP site showed a heterozygosity rate of 43% in women, and was effective in diagnosing 50% of the families studied. The population prevalence for '+' alleles of BclI and HindIII were 68% and 33%, respectively. About 88% of the women tested were heterozygous for the St14 locus, and 83% of the families could be diagnosed using this marker alone. The 1390- and 1300-bp alleles were most prevalent, while novel polymorphisms of 1500 and 1345 bp were detected. CONCLUSIONS: Based on the above data, we suggest screening hemophilic families first for BclI polymorphism, followed by an analysis for HindIII polymorphism in case of homozygosity at the BclI site. When both were noninformative, analysis of St14 locus would be necessary.

Algorithms↗