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RESEARCH PRODUCT
Pancreatic T cell protein-tyrosine phosphatase deficiency ameliorates cerulein-induced acute pancreatitis.
Yannan XiStephen M GriffeyNicole B. CogginsFawaz G. HajSantana BachaalanyJuan SastreTony TiganisFlorian WiedeEllen HoseinSalvador PérezAhmed Bettaiebsubject
MessengerWistarProtein tyrosine phosphataseInbred C57BLBiochemistryOral and gastrointestinalSTAT3Mice2.1 Biological and endogenous factorsPhosphorylationAetiologySTAT3Non-Receptor Type 2CeruletideCancerMice KnockoutProtein Tyrosine Phosphatase Non-Receptor Type 2Pancreatitis Acute NecrotizingNF-kappa B3. Good healthAcute NecrotizingAmylasesTumor necrosis factor alphaTCPTPCell activationCeruletideSTAT3 Transcription Factormedicine.medical_specialtyBiochemistry & Molecular BiologyKnockoutBiologyProinflammatory cytokinePancreatic CancerRare DiseasesInternal medicineAcinar cellmedicineGeneticsAnimalsRNA MessengerRats WistarMolecular BiologyInflammationTumor Necrosis Factor-alphaInterleukin-6ResearchCell BiologyLipaseNFKB1RatsAcute pancreatitisMice Inbred C57BLEndocrinologyPancreatitisbiology.proteinRNAProtein Tyrosine PhosphataseBiochemistry and Cell BiologyDigestive DiseasesKnockout micedescription
Background Acute pancreatitis (AP) is a common clinical problem whose incidence has been progressively increasing in recent years. Onset of the disease is trigged by intra-acinar cell activation of digestive enzyme zymogens that induce autodigestion, release of pro-inflammatory cytokines and acinar cell injury. T-cell protein tyrosine phosphatase (TCPTP) is implicated in inflammatory signaling but its significance in AP remains unclear. Results In this study we assessed the role of pancreatic TCPTP in cerulein-induced AP. TCPTP expression was increased at the protein and messenger RNA levels in the early phase of AP in mice and rats. To directly determine whether TCPTP may have a causal role in AP we generated mice with pancreatic TCPTP deletion (panc-TCPTP KO) by crossing TCPTP floxed mice with Pdx1-Cre transgenic mice. Amylase and lipase levels were lower in cerulein-treated panc-TCPTP KO mice compared with controls. In addition, pancreatic mRNA and serum concentrations of the inflammatory cytokines TNFα and IL-6 were lower in panc-TCPTP KO mice. At the molecular level, panc-TCPTP KO mice exhibited enhanced cerulein-induced STAT3 Tyr705 phosphorylation accompanied by a decreased cerulein-induced NF-κB inflammatory response, and decreased ER stress and cell death. Conclusion These findings revealed a novel role for pancreatic TCPTP in the progression of cerulein-induced AP.
year | journal | country | edition | language |
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2014-03-10 |