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1994 | 41 | 1 |

Tytuł artykułu

Activity of aminoacyl-tRNA synthetases in experimental hyperthyroidism in muscle tissues of the rabbit

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
In cardial and femoral muscles of rabbits specific activities of aminoacyl-tRNA synthetases for twenty amino acids were generally similar, namely the activities towards amino acids and their amides, leucine, isoleucine, histidine, tyrosine, proline and serine were considerably lower than towards the remaining amino acids. Specific activities of most aminoacyl-tRNA synthetases were higher in hyper­thyroidism than in euthyreosis, and were higher in femoral muscle than in heart The response to thyroxine treatment of individual aminoacyl-tRNA synthetases in both kinds of muscles varied with respect to most of the amino acids.

Wydawca

-

Rocznik

Tom

41

Numer

1

Opis fizyczny

p.35-38,fig.

Twórcy

autor
  • Medical School, ul.Lubartowska 85, 20-123 Lublin, Poland
autor

Bibliografia

  • 1. Nagaya, T., Madison, L.D. & Jameson, L. (1992) Thyroid hormone receptor mutants that cause resistance to thyroid hormone. J. Biol. Chem. 267, 13014-13019.
  • 2. Datta, S., Magge, S.N., Madison, L.D. & Jameson, L. (1992) Thyroid hormone receptor mediates transcriptional activation and repres­sion of different promoters in vitro. Molecular. Endocrinol. 6,815-825.
  • 3. Glass, Ch.K. & Holloway,J.M. (1990)Regulation of gene expression by the thyroid hormone receptor. Biochim. Biophys. Acta 1032,157-176.
  • 4. Brzuszkiewicz-Żarnowska, H., Szymonik- -Lesiuk, S., Baranowski, W. & Borkowski, T. (1991) Aminoacylacja tRNA in vivo w mięśniakach macicy. Gin. Pol. 62,437-440.
  • 5. Baranowski, W. (1986) Receptor estrogenowy i transportujący kwas rybonukleinowy (tRNA) w mięśniakach macicy u kobiet. Gin. Pol. 57, 661-664.
  • 6. Moussavi, R. (1990) Neonatal hyperthyroidism enhances growth of the heart but not of skeletal muscle. Mech. Ageing Dev. 52,1-10.
  • 7. Green, S. & Chambon, R (1988) Nuclear receptors enhance our understanding of tran­scription regulation. Trends Genet. 4,304-314.
  • 8. Szymonik-Lesiuk, S., Pasternak, K., Brzuszkiewicz- Żarnowska, H. & Borkowski, T. (1993) Influence of hyperthyroidism on acceptor activity of tRNA in some rabbit tissues. ABC 3/1-2,1-8.
  • 9. Arai, M., Otsu, K., MacLennon, D.H., Alpert, N.R. & Peri samy, M. (1991) Effect of thyroid hormone on the expression of mRNA encoding sarcoplasmic reticulum proteins. Circ. Res. 69, 265-276.
  • 10. Oppenheimer, J.H. (1968) Role of plasma proteins in the binding. Distribution and metabolism of the thyroid hormones. N. Engl. /. Med. 278,1153-1161.
  • 11. Borkowski, T. & Charęziński, M. (1971) Activity of aminoacyl-transfer RNA synthetases in brain mitochondria./. Neurochem. 18,851-857.
  • 12. Bradford, M.H. (1976) A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Attal. Biochem. 72,248-254.
  • 13. Sein, K.T., Becarewicz, A. & Kanazir, D. (1969) A simple modified method for the extraction of rat liver sRNA. Anal. Biochem. 28,65-69.
  • 14. Zubay, G. (1972) The isolation and fractionation of soluble ribonucleic acid. /. Mol. Biol. 65, 375-378.
  • 15. Denney, R.M. (1977) Detection and partial purification of rapidly sedimenting forms of aminoacyl-transfer ribonucleic acid synthetases from human placenta. Arch. Biochem. Biophys. 183,156-167.
  • 16. Albis,A.,Couteaux,R.,Janmot,Ch.&Mira,J.-C. (1993) Opposite regulations by androgenic and thyroid hormones of VI myosin expression in the two types of rabbit striated muscle: skeletal and cardiac. FEBS Lett. 318,53-56.
  • 17. Chizzonite, R.A., Everett, A.W., Prior, G. & Zak, R. (1984) Comparison of myosin heavy chains in atria and ventricles from hyperthyroid, hypo­thyroid and euthyroid rabbits. J. Biol. Chem. 259, 15564-15571.
  • 18. Mahdavi, V., Izumo, S. & Nadal-Ginard, B. (1987) Developmental and hormonal regulation of sarcomeric myosin heavy chain gene family. Circ. Res. 60,804-814.
  • 19. Towle, N.C., Mariash, CN. & Oppenheimer, J.W. (1980) Changes in the hepatic levels of messenger ribonucleic acid for malic enzyme during induction by thyroid hormone or diet. Biochemistry 19,579-585.
  • 20. Everett, A.W., Clark, W.A., Chizzonite, R. & Zale, R. (1983) Change in synthesis rates of a-and ^-myosin heavy chains in rabbit heart after treatment with thyroid hormone. J. Biol. Chem. 258,2421-2425.
  • 21. Pasternak, K. (1991) Activity of aminoacyl- -tRNA synthetases in myelogenesis and leuke­mia. ABC, 4,1/3,143-151.
  • 22. Mc Cune, S.A., Morris, H.P. & Weber, G. (1979) Neoplastic transformation-linked alterations in arginyl-tRNA synthetase activity. Biochim. Biophys. Acta 561,410-420.

Typ dokumentu

Bibliografia

Identyfikatory

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