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Arsenic-induced alteration in intracellular calcium homeostasis induces head kidney macrophage apoptosis involving the activation of calpain-2 and ERK in Clarias batrachus
Authors:Banerjee Chaitali  Goswami Ramansu  Datta Soma  Rajagopal R  Mazumder Shibnath
Institution:
  • a Immunobiology Laboratory, Department of Zoology, University of Delhi, Delhi 110 007, India
  • b Centre for Environmental Studies, Visva-Bharati University, Santiniketan 731 235, India
  • c Gut Biology Laboratory, Department of Zoology, University of Delhi, Delhi 110 007, India
  • Abstract:We had earlier shown that exposure to arsenic (0.50 μM) caused caspase-3 mediated head kidney macrophage (HKM) apoptosis involving the p38-JNK pathway in Clarias batrachus. Here we examined the roles of calcium (Ca2+) and extra-cellular signal-regulated protein kinase (ERK), the other member of MAPK-pathway on arsenic-induced HKM apoptosis. Arsenic-induced HKM apoptosis involved increased expression of ERK and calpain-2. Nifedipine, verapamil and EGTA pre-treatment inhibited the activation of calpain-2, ERK and reduced arsenic-induced HKM apoptosis as evidenced from reduced caspase-3 activity, Annexin V-FITC-propidium iodide and Hoechst 33342 staining. Pre-incubation with ERK inhibitor U 0126 inhibited the activation of calpain-2 and interfered with arsenic-induced HKM apoptosis. Additionally, pre-incubation with calpain-2 inhibitor also interfered with the activation of ERK and inhibited arsenic-induced HKM apoptosis. The NADPH oxidase inhibitor apocynin and diphenyleneiodonium chloride also inhibited ERK activation indicating activation of ERK in arsenic-exposed HKM also depends on signals from NADPH oxidase pathway. Our study demonstrates the critical role of Ca2+ homeostasis on arsenic-induced HKM apoptosis. We suggest that arsenic-induced alteration in intracellular Ca2+ levels initiates pro-apoptotic ERK and calpain-2; the two pathways influence each other positively and induce caspase-3 mediated HKM apoptosis. Besides, our study also indicates the role of ROS in the activation of ERK pathway in arsenic-induced HKM apoptosis in C. batrachus.
    Keywords:MS222  Methanesulfonate salt  RPMI-1640  Roswell Park Memorial Institute culture medium-1640  FBS  Fetal bovine serum  ROS  Reactive oxygen species  MAPK  Mitogen activated protein kinase  ERK  Extracellular signal-regulated kinase  JNK  c-Jun NH2-terminal kinase  NADPH  β-Nicotinamide-adenine-dinucleotidephosphate  reduced  Calpain-1i  Calpain-1 inhibitor  Calpain-2i  Calpain-2 inhibitor  Apo  Apocynin  DPI  Diphenyleneiodonium chloride  Vp  Verapamil  Nf  Nifidipine  EGTA  Ethyleneglycol-bis (β-aminoethyl-N  N  N&prime    N&prime  -tetraacetic acid)  NAC  N-Acetyl cysteine  U 0126  ERK inhibitor  pERK  Phosphorylated ERK  PIPES  Piperazine-1  4-bis (2-ethanesulphonic acid)  NaOH  Sodium hydroxide  EDTA  Ethylenediamine tetraacetic acid  CHAPS  3-[(3-Cholamidopropyl) dimethylammonio]-1-propanesulfonate  DTT  Dithiothreitol  PMSF  Phenylmethane sulphonyl fluoride  SDS-PAGE  Sodium lauryl sulphate-poly acrylamide gel electrophoresis  PVDF  Poly vinylidene fluoride  TBS  Tris buffered saline  AP  Alkaline phosphatase  HRP  Horseradish peroxidase  TMB  3  3&prime    5  5&prime  tetrametylbenzidine  Ac-DEVD-CHO  acetyl-Asp-Glu-Val-Asp-aldehyde  PBS  Phosphate buffered saline  DMSO  Dimethylsulfoxide  NaCl  Sodium chloride  MgCl2  Magnessium chloride  NP-40  Nonidet P-40  HEPES  N-2-Hydroxyethylpiperazine-N&prime  -2-etanesulfonic acid  SE  Standard error  
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