Alterations of hemorheological parameters and tubulin content in erythrocytes from diabetic subjects
Autor: | Juan F. Rivelli, Marina R. Amaiden, Cesar H. Casale, Ayelen D. Nigra, Verónica S. Santander, Alexis N. Campetelli, Noelia E. Monesterolo |
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Rok vydání: | 2016 |
Předmět: |
Adult
Male 0301 basic medicine Erythrocytes Chromosomal translocation macromolecular substances 030204 cardiovascular system & hematology Biology Biochemistry Diabetes Mellitus Experimental 03 medical and health sciences 0302 clinical medicine Tubulin Erythrocyte Deformability Diabetes mellitus otorhinolaryngologic diseases medicine Animals Humans Erythrocyte deformability Rats Wistar chemistry.chemical_classification Erythrocyte fragility Cell Biology medicine.disease Molecular biology Rats Diabetes Mellitus Type 1 030104 developmental biology Enzyme Diabetes Mellitus Type 2 chemistry Acetylation biology.protein Human erythrocytes Electrophoresis Polyacrylamide Gel Female |
Zdroj: | The International Journal of Biochemistry & Cell Biology. 74:109-120 |
ISSN: | 1357-2725 |
DOI: | 10.1016/j.biocel.2016.02.016 |
Popis: | Treatment of human erythrocytes with high glucose concentrations altered the content and distributions of three tubulin isotypes, with consequent reduction of erythrocyte deformability and osmotic resistance. In erythrocytes from diabetic subjects (D erythrocytes), (i) tubulin in the membrane-associated fraction (Mem-Tub) was increased and tubulin in the sedimentable fraction (Sed-Tub) was decreased, (ii) deformability was lower than in erythrocytes from normal subjects (N erythrocytes), and (iii) detyrosinated/acetylated tubulin content was higher in the Mem-Tub fraction and tyrosinated/acetylated tubulin content was higher in the Sed-Tub fraction, in comparison with N erythrocytes. Similar properties were observed for human N erythrocytes treated with high glucose concentrations, and for erythrocytes from rats with streptozotocin-induced diabetes. In N erythrocytes, high-glucose treatment caused translocation of tubulin from the Sed-Tub to Mem-Tub fraction, thereby reducing deformability and inducing acetylation/tyrosination in the Sed-Tub fraction. The increased tubulin acetylation in these cells resulted from inhibition of deacetylase enzymes. Increased tubulin acetylation and translocation of this acetylated tubulin to the Mem-Tub fraction were both correlated with reduced osmotic resistance. Our findings suggest that (i) high glucose concentrations promote tubulin acetylation and translocation of this tubulin to the membrane, and (ii) this tubulin is involved in regulation of erythrocyte deformability and osmotic fragility. |
Databáze: | OpenAIRE |
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