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2006 | 09 | 1 |
Tytuł artykułu

Exposure to TNF-alpha but not IL-1beta impairs insulin-dependent phosphorylation of protein kinase B and p70S6k in mouse C2C12 myogenic cells

Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Tumor necrosis factor (TNF)-a is a proinflammatory cytokine considered to play an important role in muscle catabolism, but little is known about the mechanisms of its action. The aim of the present study was therefore to examine the effect of TNF-α pretreatment on glucose uptake and protein synthesis as well as the cellular content and phosphorylation of protein kinase B (PKB), p70S6k, Mitogen Activated Protein (MAP) kinase and p90 rsk in mouse C2C12 myotubes stimulated with insulin. To determine whether interleukin (IL)-lß might be involved in the catabolic action of TNF-α, the effects of IL-lß were also tested. Experiments were performed on mouse C2C12 myoblasts subjected to differentiation in the presence of increasing concentrations of TNF-α (0.1-100 ng/ml) or IL-lß (5-50 ng/ml) for 5 or 6 days. Insulin (100 nmol/1) markedly stimulated glucose uptake in C2C12 myotubes (202.6% of control). This effect was profoundly attenuated by pretreatment with TNF-a at a concentration of 1 ng/ml (122.2% of control) and completely abolished by higher cytokine concentrations. Pretreatment of cells with TNF-a at a concentration of 1 ng/ml was also effective in diminishing the effect of insulin on protein synthesis, whereas higher cytokine concentrations prevented hormonal stimulation of protein synthesis in C2C12 myotubes. Pretreatment with TNF-a caused a significant decrease in PKB protein content. Insulin-mediated activation of protein kinase B was significantly diminished in cells differentiated in the presence of TNF-a. Treatment of C2C12 cells with insulin led to the gel mobility retardation of p70S6k indicating its phosphorylation and activation. In cells differentiated in the presence of TNF-a an approximately 2-fold decrease of insulin-mediated p70s6k phosphorylation was noted. Six-day differentiation of myogenic cells in the presence of TNF-α did not affect the protein content of p42MAPK, p44MAPK, p90rsk and phosphorylation of p42MAPK. Neither glucose uptake nor protein synthesis stimulated by insulin were affected significantly by pretreatment with IL-lß. Preincubation of myogenic cells with IL-lß did not modify either the protein content of PKB and p70S6k or the insulin-stimulated phosphorylation of these kinases. In conclusion: i) high concentrations of TNF-α, but not IL-1 ß, present in the extracellular environment during myoblast differentiation prevent the stimulatory action of insulin on glucose uptake and protein synthesis; ii) insulin resistance induced by TNF-α in C2C12 myogenic cells could be associated with the decreased insulin-mediated phosphorylation of PKB and p70S6k, but not with the basal phosphorylation of p42MAPK.
Wydawca
-
Rocznik
Tom
09
Numer
1
Opis fizyczny
p.1-10,fig.,ref.
Twórcy
  • Warsaw Agricultural University, Nowoursynowska 159, 02-776 Warsaw, Poland
Bibliografia
  • Alessi DR, Andjelkovich M, Caudwell B, Cron P, Morrice N, Cohen P, Hemmings BA (1996) Mechanism of acti­vation of protein kinase B by insulin and IGF-I. EMBO J 15: 6541-6551.
  • Alvarez B, Quinn LS, Busquets S, Quilès MT, Lopez-Soriano FJ, Argiles JM (2002) Tumor necrosis factor-alpha exerts interleukin-6-dependent and -inde­pendent effects on cultured skeletal muscle cells. Bio- chim Biophys Acta 1542: 66-72.
  • Bark TH, McNurlan MA, Lang CH, Garlick PJ (1998) In­creased protein synthesis after acute IGF-I or insulin infusion is localized to muscle in mice. Am J Physiol 275: 118-123.
  • Baracos VE (1998) Anabolic and catabolic mediators. Curr Opin Clin Nutr Metab Care 1: 241-244.
  • Baracos VE (2000) Regulation of skeletal-muscle- -protein turnover in cancer-associated cachexia. Nutri­tion 16: 1015-1018.
  • Bondeva T, Pirola L, Bulgarelli-Leva G, Rubio I, Wetzker R, Wymann MP (1998) Bifurcation of lipid and protein kinase signals of PI3K gamma to the protein kinases PKB and MAPK. Science 282: 293-296.
  • Broussard SR, McCusker RH, Novakofski JE, Strie K, Shen WH, Johnson RW, Freund GG, Dantzer R, Kelley KW (2003) Cytokine-hormone interactions: tumor necrosis factor a impairs biologic activity and downstream activa­tion signals of the insulin-like growth factor I receptor in myoblasts. Endocrinology 144: 2988-2996.
  • Chang H, Bistrian B (1998) The role of cytokines in the catabolic consequences of infection and injury. JPEN J Parenter Enteral Nutr 22: 56-66.
  • Cooney R, Kimball SR, Eckman R, Maish 3rd G, Shumate M, Vary TC (1999) TNF-binding protein ameliorates inhibition of skeletal muscle protein synthesis during sepsis. Am J Physiol 276: 611-619.
  • Costelli P, Tullio RD, Baccino FM, Melloni E (2001) Acti­vation of Ca(2+)-dependent proteolysis in skeletal muscle and heart in cancer cachexia. Br J Cancer 84: 946-950.
  • De Alvaro C, Teruel T, Hernandez R, Lorenzo M (2004) Tumor necrosis factor alpha produces insulin resistance in skeletal muscle by activation of inhibitor kappaB kinase in a MAPK-dependent manner. J Biol Chem 279: 17170-17178.
  • De Rossi M, Bernasconi P, Baggi F, de Waal MR, Man­tegazza R (2000) Cytokines and chemokines are both expressed by human myoblasts: possible relevance for the immune pathogenesis of muscle inflammation. Int Immunol 12: 1329-1332.
  • Fairfield WP, Treat M, Rosenthal DI, Frontera W, Stanley T, Cocroran C, Costello M, Parlman K, Schoenfeld D, Klibanski A, Grinspoon S (2001) Effects of testosterone and exercise on muscle leanness in eugonadal men with AIDS wasting. J Appl Physiol 90: 2166-2171.
  • Fernandez-Celemin L, Pasko N, Blomart V, Thissen J-P (2002) Inhibition of muscle insulin-like growth factor I expression by tumor necrosis factor-a. Am J Physiol 283: 1279-1290.
  • Frost RA, Lang CH, Gelato MC (1997) Transient exposure of human myoblasts to tumor necrosis factor-a inhibits serum and insulin-like growth factor-I stimulated pro­tein synthesis. Endocrinology 138: 4153-4159.
  • Frost RA, Nystrom GJ, Lang CH (2003) Tumor necrosis factor-a decreases insulin-like growth factor-I messenger ribonucleic acid expression in C2C12 myoblasts via a Jun N-terminal kinase pathway. Endocrinology 144: 1770-1779.
  • Gual P, Gremeaux T, Gonzalez T, Le Marchand-Brustel Y, Tanti JF (2003) MAP kinases and mTOR mediate insu­lin-induced phosphorylation of insulin receptor substra­te-1 on serine residues 307, 612 and 632. Diabetologia 46: 1532-1542.
  • Gual P, Le Marchand-Brustel Y, Tanti JF (2005) Positive and negative regulation of insulin signaling through IRS-1 phosphorylation. Biochimie 87: 99-109.
  • Hotamisligil GS (2003) Inflammatory pathways and insulin action. Int J Obes Relat Metab Disord 27, supll. 3: 53-55.
  • Kim JA, Yeh DC, Ver M. Li Y, Carranza A, Conrads TP, Veenstra TD, HarringtonMA, Quon MJ (2005) Phos­phorylation of Ser24 in the pleckstrin homology domain of insulin receptor substrate-1 by Mouse Pell-like kinase/interleukin-1 receptor-associated kinase: cross- -talk between inflammatory signaling and insulin signal­ing that may contribute to insulin resistance. J Biol Chem 280: 23173-23183.
  • Kraemer FB, Takeda D, Natu V, Sztalryd C (1998) Insulin regulates lipoprotein lipase activity in rat adipose cells via wortmannin and rapamycin-sensitive pathways. Metab­olism 47: 555-559.
  • Lang CH, Nystrom GJ, Frost RA (2001) Tissue-specific regulation of IGF-Iand IGF-binding proteins in response to TNFalpha. Growth Horm IGF Res 11: 250-260.
  • Lang CH, Pruznak AM, Frost RA (2005) TNFalpha me­diates sepsis-induced impairment of basal and leucine-stimulated signaling via S6K1 and eIF4E in car­diac muscle. J Cell Biochem 94: 419-431.
  • Li YP, Reid MB (2000) NF-kappaB mediates the protein loss induced by TNF-a in differentiated skeletal muscle myotubes. Am J Physiol 279: 1165-1170.
  • Matthys P, Billiau A (1997) Cytokines and cachexia. Nutri­tion 13: 763-770.
  • McNurlan MA, Garlick PJ, Steibigel RT, DeCristofaro KA, Frost RA, Lang CH, Johnson RW, Santasier AM, Cabahug CJ, Führer J, Gelato MC (1997) Responsive­ness of muscle protein synthesis to growth hormone ad­ministration in HIV-infected individuals declines with se­verity of disease. J Clin Invest 100: 2125-2132.
  • Medina EA, Afsari RR, Ravid T, Castillo SS, Erickson KL, Goldkorn T (2005) Tumor necrosis factor-{alpha} de­creases Akt protein levels in 3T3-L1 adipocytes via the caspase-dependent ubiquitination of Akt. Endocrinology 146: 2726-2735.
  • Musaro A, McCullagh K, Paul A, Houghton L, Dobrowolny G, Molinaro M, Barton ER, Rosenthal N (2001) Localiz­ed Igf-1 trangene expression sustains hypertrophy and re­generation in senescent skeletal muscle. Nat Genet 27: 195-200.
  • Nolte LA, Hansen PA, Chen MM, Schluter JM, Gulve EA, Holloszy JO (1998) Short-term exposure to tumor necro­sis factor-a does not affect insulin-stimulated glucose up­take in skeletal muscle. Diabetes 47: 721-726.
  • Patiag D, Gray S, Idris I, Donnelly R (2000) Effects of tu­mour necrosis factor-alpha and inhibition of protein kinase C on glucose uptake in L6 myoblasts. Clin Sci (Lond.) 99: 303-307.
  • Redpath NT, Foulstone EL, Proud CG (1996) Regulation of translation elongation factor-2 by insulin via rapamycin-sensitive signaling pathway. EMBO J 15: 2291-2297.
  • Rosenzweig T, Braiman L, Bak A, Alt A, Kuroki T, Sampson SR (2002) Differential effects of tumor necrosis fac­tor-alpha on protein kinase C isoforms alpha and delta mediate inhibition of insulin receptor signaling. Diabetes 51: 1921-1930.
  • Sagnizadeh M, Ong JM, Garvey WT, Henry RR, Kern PA (1996) The expression of TNF by human muscle - rela­tionship to insulin resistance. J Clin Invest 97: 1111-1116.
  • Tracey KJ, Cerami A (1993) Tumor necrosis factor, other cytokines and disease. Annu Rev Cell Biol 9: 317-343.
  • Ueki K, Yamamoto-Honda R, Kaburagi Y, Yamauchi T, Tobe K, Burgering BM, Coffer PJ, Komuro I, Akanuma Y, Yazaki Y, Kadowaki T (1998) Potential role of pro­tein kinase B in insulin-induced glucose transport, glyco­gen synthesis, and protein synthesis. J Biol Chem 273: 5315-5322.
  • Valverde AM, Lorenzo M, Navarro P, Mur C, and Benito M (2000) Okadaic acid inhibits insulin-induced glucose transport in fetal brown adipocytes in an Akt-indepen- dent and protein kinase C-dependent manner. FEBS Lett 472: 153-158.
  • White MF, Kahn CH (1994) The insulin signaling system. J Biol Chem 269:1-4.
  • Williamson DL, Kimball SR, Jefferson LS (2005) Acute treatment with TNF-{alpha} attenuates insulin-stimu­lated protein synthesis in cultures of C2C12 myotubes through a MEKl-sensitive mechanism. Am J Physiol 289: 95-104.
  • Wojnar MM, Hawkins WG, Lang CH (1995) Nutritional support of the septic patient. Crit Care Clin 11: 717-733.
  • Wojtaszewski JFP, Hansen BF, Gade J, Kiens B. Markuns JF, Goodyear LJ, and Richter EA (2000) Insulin signal­ing and insulin sensitivity after exercise in human skeletal muscle. Diabetes 49: 325-331.
  • Yamaguchi K, Higashiura K, Ura N, Murakami H, Hyakukoku M, Furuhashi M, Shimamoto K 12003) The effect of tumor necrosis factor-a in tissue specificity and selectivity to insulin signaling. Hvpertens Res 26: 389-396.
  • Zick Y (2001) Insulin resistance: a phosphor, lation- -based uncoupling of insulin signaling. Trends Cell Biol 11: 437-441.
Typ dokumentu
Bibliografia
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Identyfikator YADDA
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