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1. Tubulin Regulates Plasma Membrane Ca 2+ -ATPase Activity in a Lipid Environment-dependent Manner.

2. Tubulin-mediated anatomical and functional changes caused by Ca 2+ in human erythrocytes.

3. Prevention of tubulin/aldose reductase association delays the development of pathological complications in diabetic rats.

4. Inhibition of flippase-like activity by tubulin regulates phosphatidylserine exposure in erythrocytes from hypertensive and diabetic patients.

5. Human erythrocytes: cytoskeleton and its origin.

6. Tubulin-Na + , K + -ATPase interaction: Involvement in enzymatic regulation and cellular function.

7. Regulation of aldose reductase activity by tubulin and phenolic acid derivates.

8. Tubulin is retained throughout the human hematopoietic/erythroid cell differentiation process and plays a structural role in sedimentable fraction of mature erythrocytes.

9. Alterations of hemorheological parameters and tubulin content in erythrocytes from diabetic subjects.

10. PMCA activity and membrane tubulin affect deformability of erythrocytes from normal and hypertensive human subjects.

11. Effects of detyrosinated tubulin on Na+,K+-ATPase activity and erythrocyte function in hypertensive subjects.

12. Activation of H(+)-ATPase by glucose in Saccharomyces cerevisiae involves a membrane serine protease.

13. 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.

14. Involvement of membrane tubulin in erythrocyte deformability and blood pressure.

15. Regulation of plasma membrane Ca(2+)-ATPase activity by acetylated tubulin: influence of the lipid environment.

16. Regulation of phosphatidic acid levels in Trypanosoma cruzi.

17. Tubulin pools in human erythrocytes: altered distribution in hypertensive patients affects Na+, K+-ATPase activity.

18. Lack of stabilized microtubules as a result of the absence of major maps in CAD cells does not preclude neurite formation.

19. Activation of PMCA by calmodulin or ethanol in plasma membrane vesicles from rat brain involves dissociation of the acetylated tubulin/PMCA complex.

20. Tubulin must be acetylated in order to form a complex with membrane Na(+),K (+)-ATPase and to inhibit its enzyme activity.

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