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Effects of nitric oxide synthase-3 overexpression on post-translational modifications and cell survival in HepG2 cells
Authors:Aguilar-Melero P  Ferrín G  Muntané J
Institution:
  • a Liver Research Unit, IMIBIC (Instituto Maimónides para la Investigación Biomédica de Córdoba), “Reina Sofia” University Hospital, Córdoba, Spain
  • b Centro de Investigación Biomédica en Red de Enfermedades Hepáticas y Digestivas (CIBEREH o Ciberehd), Instituto de Salud Carlos III, Spain
  • Abstract:Hepatocarcinoma is the fifth most common neoplasm and the third cause of cancer-related death. The development of genetic- and/or molecular-based therapies is urgently required. The administration of high doses of nitric oxide (NO) promotes cell death in hepatocytes. NO contributes to cell signaling by inducing oxidative/nitrosative-dependent post-translational modifications. The aim of the present study was to investigate protein modifications and its relation with alteration of cell proliferation and death in hepatoma cells. Increased intracellular NO production was achieved by stable nitric oxide synthase-3 (NOS-3) overexpression in HepG2 cells. We assessed the pattern of nitration, nitrosylation and carbonylation of proteins by proteomic analysis. The results showed that NOS-3 cell overexpression increased oxidative stress, which affected proteins mainly involved in cell protein folding. Carbonylation also altered metabolism, as well as immune and antioxidant responses. The interaction of nitrosative and oxidative stress generated tyrosine nitration, which affected the tumor marker Serpin B3, ATP synthesis and cytoskeleton. All these effects were associated with a decrease in chaperone activity, a reduction in cell proliferation and an increased cell death. Our study showed that alteration of nitration, nitrosylation and carbonylation pattern of proteins by NO-dependent oxidative/nitrosative stress was related to a reduction of cell survival in a hepatoma cell line.
    Keywords:4TO  cells transfected with the empty plasmid 4TO  4TO-NOS  cells transfected with the cDNA NOS-3 inserted into the plasmid 4TO  ACTB  actin 1  AL1B1  aldehyde dehydrogenase X  ATPB  ATP synthase subunit beta  CALR  calreticulin  CH60  60   kDa heat shock protein  DNPH  2  4-dinitrophenylhydrazine  DTT  dithiothreitol  ECHM  enoyl-CoA hydratase  ENOA  alpha enolase  ENPL  endoplasmin  GRP75  stress-70 protein  GRP78  78   kDa glucose-regulated protein  GSH  reduced glutathione  GSSG  oxidized glutathione or glutathione disulfide  HNRPF  heterogeneous nuclear ribonucleoprotein F  HSP7C  heat shock cognate 71   kDa protein  LDH  lactate dehydrogenase  l-NAME" target="_blank">l-NAME  l-arginine methyl ester" target="_blank">N-nitro-l-arginine methyl ester  MDA  malondialdehyde  MMTS  methyl methanethiosulfonate  NDKB  nucleoside diphosphate kinase B  NO  nitric oxide  NOS-3  nitric oxide synthase-3  PDIA1  protein disulfide isomerase  PDIA3  protein disulfide isomerase A3  PPAC  low molecular weight phosphotyrosine protein phosphatase  PRDX6  peroxiredoxin 6  ROS  reactive oxygen species  RRBP1  ribosome-binding protein 1  SPB3  serpin B3  TBB5  tubulin beta chain  TPSN  tapasin
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