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The role of adrenergic agonists on glycogenolysis in rat hepatocyte cultures and possible involvement of NO
J. Hodis, N. Kutinová-Canová, P. Potměšil, L. Kameníková, E. Kmoníčková, Z. Zídek, H. Farghali
Jazyk angličtina Země Česko
Grantová podpora
NR9379
MZ0
CEP - Centrální evidence projektů
Digitální knihovna NLK
Plný text - Článek
Zdroj
NLK
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- MeSH
- adrenalin genetika metabolismus MeSH
- financování organizované využití MeSH
- glykogenolýza genetika účinky léků MeSH
- hepatocyty metabolismus účinky léků MeSH
- jaterní glykogen chemie metabolismus MeSH
- nemoci jater etiologie komplikace metabolismus MeSH
- oxid dusnatý metabolismus MeSH
- polymerázová řetězová reakce s reverzní transkripcí metody využití MeSH
- potkani Wistar metabolismus MeSH
- synthasa oxidu dusnatého genetika metabolismus MeSH
Certain liver metabolic diseases point to the presence of disturbances in glycogen deposition. Epinephrine raises the cAMP level that activates protein kinase A leading to the activation of phosphorylase and glycogen breakdown. In the present report, we sought to investigate whether NO is produced during adrenoceptor agonist-induced glycogenolysis in rat hepatocytes in cultures. Isolated glycogen rich rat hepatocytes in cultures were used. NO production (NO2 -) was assessed under the effect of adrenergic agonists and adrenergic agonist/antagonist pairs, dibutyryl cyclic AMP sodiumpotassium salt (db-cAMP), NO synthase (NOS) inhibitors N?-nitro-L-arginine methyl ester (L-NAME), aminoguanidine (AG) and the NO donor S-nitroso-N-acetyl penicillamine (SNAP). The inducible NO synthase (iNOS) mRNA was examined by the reverse transcription-polymerase chain reaction (RT-PCR). Glycogenolysis was quantified by glucose levels released into medium. The amount of glucose and NO2 - released by hepatocytes was increased as a result of epinephrine, phenylephrine or db-cAMP treatments. The increase in glucose and NO2 - released by epinephrine or phenylephrine was blocked or reduced by prazosin pretreatment and by NOS inhibitors aminoguanidine and LNAME. iNOS gene expression was up-regulated by epinephrine. It can be concluded that glycogenolysis occurs through ?-adrenoceptor stimulation and a signaling cascade may involve NO production.
Citace poskytuje Crossref.org
Lit.: 26
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- $a Certain liver metabolic diseases point to the presence of disturbances in glycogen deposition. Epinephrine raises the cAMP level that activates protein kinase A leading to the activation of phosphorylase and glycogen breakdown. In the present report, we sought to investigate whether NO is produced during adrenoceptor agonist-induced glycogenolysis in rat hepatocytes in cultures. Isolated glycogen rich rat hepatocytes in cultures were used. NO production (NO2 -) was assessed under the effect of adrenergic agonists and adrenergic agonist/antagonist pairs, dibutyryl cyclic AMP sodiumpotassium salt (db-cAMP), NO synthase (NOS) inhibitors N?-nitro-L-arginine methyl ester (L-NAME), aminoguanidine (AG) and the NO donor S-nitroso-N-acetyl penicillamine (SNAP). The inducible NO synthase (iNOS) mRNA was examined by the reverse transcription-polymerase chain reaction (RT-PCR). Glycogenolysis was quantified by glucose levels released into medium. The amount of glucose and NO2 - released by hepatocytes was increased as a result of epinephrine, phenylephrine or db-cAMP treatments. The increase in glucose and NO2 - released by epinephrine or phenylephrine was blocked or reduced by prazosin pretreatment and by NOS inhibitors aminoguanidine and LNAME. iNOS gene expression was up-regulated by epinephrine. It can be concluded that glycogenolysis occurs through ?-adrenoceptor stimulation and a signaling cascade may involve NO production.
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