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Volodymyr I. Lushchak

Department of Biochemistry and Biotechnology

Vassyl Stefanyk Precarpathian National University

57 Shevchenko Str.

76025

Ukraine

[email]@pu.if.ua

Name/email consistency: high

 
 
 
 
 
 
 

Affiliations

  • Department of Biochemistry and Biotechnology, Vassyl Stefanyk Precarpathian National University, 57 Shevchenko Str., 76025, Ukraine. 2001 - 2011
  • Karadag Branch of Southern Sea Biology Institute, Kurortne, Feodosia, Crimea, Ukraine. 1998

References

  1. Adaptive response to oxidative stress: Bacteria, fungi, plants and animals. Lushchak, V.I. Comp. Biochem. Physiol. C Toxicol. Pharmacol. (2011) [Pubmed]
  2. Oxidative stress in yeast. Lushchak, V.I. Biochemistry Mosc. (2010) [Pubmed]
  3. Regulatory protein Yap1 is involved in response of yeast Saccharomyces cerevisiae to nitrosative stress. Lushchak, O.V., Inoue, Y., Lushchak, V.I. Biochemistry Mosc. (2010) [Pubmed]
  4. AMP-deaminase from goldfish white muscle: regulatory properties and redistribution under exposure to high environmental oxygen level. Lushchak, V.I., Husak, V.V., Storey, J.M., Storey, K.B. Fish Physiol. Biochem. (2009) [Pubmed]
  5. Possible pathways involved in activation of catalase and superoxide dismutase with sodium nitroprusside in yeast Saccharomyces cerevisiae. Lushchak, O.V., Lushchak, V.I. Ukr. Biokhim. Zh. (2009) [Pubmed]
  6. Buffer modulation of menadione-induced oxidative stress in Saccharomyces cerevisiae. Lushchak, O.V., Bayliak, M.M., Korobova, O.V., Levine, R.L., Lushchak, V.I. Redox Rep. (2009) [Pubmed]
  7. Chromium(III) induces oxidative stress in goldfish liver and kidney. Lushchak, O.V., Kubrak, O.I., Lozinsky, O.V., Storey, J.M., Storey, K.B., Lushchak, V.I. Aquat. Toxicol. (2009) [Pubmed]
  8. Inactivation of genes encoding superoxide dismutase modifies yeast response to S-nitrosoglutathione-induced stress. Lushchak, O.V., Nykorak, N.Z., Ohdate, T., Inoue, Y., Lushchak, V.I. Biochemistry Mosc. (2009) [Pubmed]
  9. Regulation of AMP-deaminase activity from white muscle of common carp Cyprinus carpio. Lushchak, V.I., Husak, V.V., Storey, K.B. Comp. Biochem. Physiol. B, Biochem. Mol. Biol. (2008) [Pubmed]
  10. Catalase modifies yeast Saccharomyces cerevisiae response towards S-nitrosoglutathione-induced stress. Lushchak, O.V., Lushchak, V.I. Redox Rep. (2008) [Pubmed]
  11. Pdr12p-dependent and -independent fluorescein extrusion from baker's yeast cells. Lushchak, V., Abrat, O., Miedzobrodzki, J., Semchyshyn, H. Acta Biochim. Pol. (2008) [Pubmed]
  12. The effect of temperature increase on the expression of manganese superoxide dismutase in tissues of common carp Cyprinus carpio. Lushchak, V.I., Murray, P., Cossins, A.R. Ukr. Biokhim. Zh. (2007) [Pubmed]
  13. Growth on ethanol results in co-ordinated Saccharomyces cerevisiae response to inactivation of genes encoding superoxide dismutases. Lushchak, O.V., Semchyshyn, H.M., Lushchak, V.I. Redox Rep. (2007) [Pubmed]
  14. Free radical oxidation of proteins and its relationship with functional state of organisms. Lushchak, V.I. Biochemistry Mosc. (2007) [Pubmed]
  15. Hypoxia induces oxidative stress in tissues of a goby, the rotan Perccottus glenii. Lushchak, V.I., Bagnyukova, T.V. Comp. Biochem. Physiol. B, Biochem. Mol. Biol. (2007) [Pubmed]
  16. Diethyldithiocarbamate injection induces transient oxidative stress in goldfish tissues. Lushchak, V.I., Bagnyukova, T.V., Lushchak, O.V., Storey, J.M., Storey, K.B. Chem. Biol. Interact. (2007) [Pubmed]
  17. Temperature increase results in oxidative stress in goldfish tissues. 2. Antioxidant and associated enzymes. Lushchak, V.I., Bagnyukova, T.V. Comp. Biochem. Physiol. C Toxicol. Pharmacol. (2006) [Pubmed]
  18. Budding yeast Saccharomyces cerevisiae as a model to study oxidative modification of proteins in eukaryotes. Lushchak, V.I. Acta Biochim. Pol. (2006) [Pubmed]
  19. Temperature increase results in oxidative stress in goldfish tissues. 1. Indices of oxidative stress. Lushchak, V.I., Bagnyukova, T.V. Comp. Biochem. Physiol. C Toxicol. Pharmacol. (2006) [Pubmed]
  20. Hypoxia and recovery perturb free radical processes and antioxidant potential in common carp (Cyprinus carpio) tissues. Lushchak, V.I., Bagnyukova, T.V., Lushchak, O.V., Storey, J.M., Storey, K.B. Int. J. Biochem. Cell Biol. (2005) [Pubmed]
  21. Catalases protect cellular proteins from oxidative modification in Saccharomyces cerevisiae. Lushchak, V.I., Gospodaryov, D.V. Cell Biol. Int. (2005) [Pubmed]
  22. Hyperoxia results in transient oxidative stress and an adaptive response by antioxidant enzymes in goldfish tissues. Lushchak, V.I., Bagnyukova, T.V., Husak, V.V., Luzhna, L.I., Lushchak, O.V., Storey, K.B. Int. J. Biochem. Cell Biol. (2005) [Pubmed]
  23. The effect of buthionine sulfoximine on the glutathione level in goldfish tissues. Lushchak, V.I., Hermes-Lima, M. Ukr. Biokhim. Zh. (2005) [Pubmed]
  24. Oxidative stress and mechanisms of protection against it in bacteria. Lushchak, V.I. Biochemistry Mosc. (2001) [Pubmed]
  25. Influence of exercise on the activity and the distribution between free and bound forms of glycolytic and associated enzymes in tissues of horse mackerel. Lushchak, V.I., Bagnyukova, T.V., Storey, J.M., Storey, K.B. Braz. J. Med. Biol. Res. (2001) [Pubmed]
  26. Comparative study of free and bound glycolytic enzymes from sea scorpion brain. Lushchak, V.I., Lushchak, L.P., Bahnjukova, T.V., Spichenkov, A.V., Storey, K.B. Biochem. Cell Biol. (1998) [Pubmed]
 
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