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Stress proteins induced by cadmium in the abdominal muscle of the shrimp Crangon crangon [commun.]

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Shrimps were exposed to various concentrations of CdCl2 under laboratory conditions for 96 h. Abdominal muscles were isolated from exposed and control animals. The induction of stress proteins (heat shock proteins of the Hsp70 family and metallothionein) was detected following polyacrylamide gel electrophoresis in the presence of SDS (SDS-PAGE) and specific staining (Western blotting method in the case of the Hsp70 or Coomassie blue and silver staining in the case of metallothionein). The short-term cadmium poisoning in the shrimp Crangon crangon resulted in the induction, in a concentration-dependent manner, of metallothionein and a new protein with an approximate molecular weight of 70 kDa in abdominal muscle. This protein was immunologically cross-reactive with the 70 kDa heat shock protein of the mouse.
Czasopismo
Rocznik
Strony
157--162
Opis fizyczny
Bibliogr. 15 poz., rys.
Twórcy
autor
  • Biological Station, Gdańsk University, Sobieszewo
Bibliografia
  • 1. Bolałek J., Neugebauer E., Nowacki J., 1989, Copper, lead, cadmium and zinc in surface water of the Gulf of Gdańsk, Stud. i Mater. Oceanol., 54, 109-129, (in Polish).
  • 2. Glaven B. J., Irby R. B., Snell T. W., 1991, Biological indicators of cadmium exposure, Meth. Enzymol., 205, 592-599.
  • 3. Hamer D. H., 1986, Metallothionein, Ann. Rev. Biochem., 55, 913-951.
  • 4. Heikkila J. J., Schultz G. A., Iatrou K, Gedamu L., 1982, Expression of a set of fish genes following heat or metal ion exposure, J. Biol. Chem., 257, 12000-12005.
  • 5. Laemmli U. L., 1970, Cleavage of structure proteins during the assembly of bacteriofage T4, Nature, 277, 680-685.
  • 6. Lindquist S., Craig E. A., 1988, The heat-shock proteins, Ann. Rev. Genet., 22, 631-677.
  • 7. Lipińska B., 1989, Role of the heat-shock proteins, Post. Biochem., 36, 32-42, (in Polish).
  • 8. McCormick C. C., Lih-Yuan Lin, 1991, Quantification and identification of metallothioneins by gel electrophoresis and silver staining, Meth. Enzymol., 205, 71-78.
  • 9. McLusky D. S., Bryant V., Campbell R., 1986, The effect of temperature and salinity on the toxicity of heavy metals to marine and estuarine invertebrates, Oceanogr. Biol. Ann. Rev., 24, 481-520.
  • 10. Napierska D., Klein G., Skorkowski E. F., 1996, Effect of cadmium and heat shock stress on protein expression in abdomen muscle of shrimps Palaemonetes varians and Crangon crangon, Biol. Bull., Poznań, 33 (Suppl.), 44-45.
  • 11. Napierska D., Thebault M. T., Pempkowiak J., Skorkowski E. F., 1997, Comparison of short-term cadmium poisoning in the shrimp Crangon crangon from the Baltic Sea and the shrimp Palaemon serratus from the Atlantic Ocean with the cadmium bioaccumulation and malic enzyme activity in abdomen muscle, Oceanologia, 39 (2), 137-146.
  • 12. Pelham H. R. B., 1986, Speculations on the functions of the major heat shock and glucose-regulated proteins, Cell, 46, 959-961.
  • 13. Spector T., 1978, Refinement of the Coomassie Blue method of protein quantitation. A simple and linear spectrophotometric assay for 0.5 to 50 μg of protein, Anal. Biochem., 86, 142-146.
  • 14. Szaniawska A., 1985, Toxic effect and accumulation of cadmium by common shrimp (Crangon crangon, Decapoda, Natantia), Oceanologia, 22, 51-61.
  • 15. Veldhuizen-Tsoerkan M. B., Holwerda D. A., van der Mast C. A., Zandee D. I., 1990, Effects of cadmium exposure and heat shock on protein synthesis in gill tissue of the sea mussel, Mytilus edulis, Comp. Biochem. Physiol., 96 (C), 419-426.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUS8-0015-0048
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