High glucose levels induce inhibition of Na,K-ATPase via stimulation of aldose reductase, formation of microtubules and formation of an acetylated tubulin/Na,K-ATPase complex

被引:30
作者
Rivelli, Juan F. [1 ]
Amaiden, Marina R. [1 ]
Monesterolo, Noelia E. [1 ]
Previtali, Gabriela [1 ]
Santander, Veronica S. [1 ]
Fernandez, Adriana [1 ]
Arce, Carlos A. [2 ]
Casale, Cesar H. [1 ]
机构
[1] Univ Nacl Rio Cuarto, Dept Biol Mol, Fac Ciencias Exactas Fis Quim & Nat, RA-5800 Rio Cuarto, Cordoba, Argentina
[2] Univ Nacl Cordoba, Fac Ciencias Quim, Ctr Invest Quim Biol Cordoba CIQUIBIC, CONICET,Dept Quim Biol, RA-5000 Cordoba, Argentina
关键词
Na+; K+-ATPase; Acetylated tubulin; Diabetes; Microtubules; Human erythrocytes; Aldose reductase; PLASMA-MEMBRANE; C-PEPTIDE; TUBULIN; ATPASE; NA+; K+-ATPASE; HYPERGLYCEMIA; PROTEIN; BRAIN; ACCUMULATION; PURIFICATION;
D O I
10.1016/j.biocel.2012.04.011
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Our previous studies demonstrated that acetylated tubulin forms a complex with Na+,K+-ATPase and thereby inhibits its enzyme activity in cultured COS and CAD cells. The enzyme activity was restored by treatment of cells with L-glutamate, which caused dissociation of the acetylated tubulin/Na+,K+-ATPase complex. Addition of glucose, but not elimination of glutamate, led to re-formation of the complex and inhibition of the Na+,K+-ATPase activity. The purpose of the present study was to elucidate the mechanism underlying this effect of glucose. We found that exposure of cells to high glucose concentrations induced: (a) microtubule formation; (b) activation of aldose reductase by the microtubules; (c) association of tubulin with membrane; (d) formation of the acetylated tubulin/Na+,K+-ATPase complex and consequent inhibition of enzyme activity. Exposure of cells to sorbitol caused similar effects. Studies on erythrocytes from diabetic patients and on tissues containing insulin-insensitive glucose transporters gave similar results. Na+,K+-ATPase activity was >50% lower and membrane-associated tubulin content was >200% higher in erythrocyte membranes from diabetic patients as compared with normal subjects. Immunoprecipitation analysis showed that acetylated tubulin was a constituent of a complex with Na+,K+-ATPase in erythrocyte membranes from diabetic patients. Based on these findings, we propose a mechanism whereby glucose triggers a synergistic effect of tubulin and sorbitol, leading to activation of aldose reductase, microtubule formation, and consequent Na+,K+-ATPase inhibition. (C) 2012 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1203 / 1213
页数:11
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