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Biophysical Chemistry|September 14, 1999
Volume stabilization in human erythrocytes: combined effects of Ca2+-dependent potassium channels and adenylate metabolismM V Martinov, V M Vitvitsky, F I Ataullakhanov
Biotechnology and Applied Biochemistry|December 1, 1996
Reversible binding of anthracycline antibiotics to erythrocytes treated with glutaraldehydeF I Ataullakhanov, E V Kulikova, V M Vitvitsky
Journal of Theoretical Biology|March 7, 1996
A possible role of adenylate metabolism in human erythrocytes: simple mathematical modelF I Ataullakhanov, S V Komarova, V M Vitvitsky
FEBS Letters|December 23, 1998
Product activation of human erythrocyte AMP deaminaseE V Mosharov, V M Vitvitsky, F I Ataullakhanov
Biochimica Et Biophysica Acta|October 17, 2009
The logic of the hepatic methionine metabolic cycleM V Martinov, V M Vitvitsky, R Banerjee, et al.
Plos One|December 21, 2022
Significance of two transmembrane ion gradients for human erythrocyte volume stabilizationF I Ataullakhanov, M V Martinov, Qiang Shi, et al.
Biochimica Et Biophysica Acta|March 4, 2000
Deficiencies of glycolytic enzymes as a possible cause of hemolytic anemiaM V Martinov, A G Plotnikov, V M Vitvitsky, et al.
Journal of Theoretical Biology|December 7, 1996
A possible role of adenylate metabolism in human erythrocytes. 2. Adenylate metabolism is able to improve the erythrocyte volume stabilizationF I Ataullakhanov, S V Komarova, M V Martynov, et al.
Blood Cells, Molecules & Diseases|November 27, 1999
Adenine nucleotide synthesis in human erythrocytes depends on the mode of supplementation of cell suspension with adenosineS V Komarova, E V Mosharov, V M Vitvitsky, et al.
Journal of Theoretical Biology|June 2, 2000
A substrate switch: a new mode of regulation in the methionine metabolic pathwayM V Martinov, V M Vitvitsky, E V Mosharov, et al.
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