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2. PKC-α contributes to high NaCl-induced activation of NFAT5 (TonEBP/OREBP) through MAPK ERK1/2

3. High NaCl-induced inhibition of PTG contributes to activation of NFAT5 through attenuation of the negative effect of SHP-1

4. Inhibitory phosphorylation of GSK-3β by AKT, PKA, and PI3K contributes to high NaCl-induced activation of the transcription factor NFAT5 (TonEBP/OREBP)

5. Water restriction increases renal inner medullary manganese superoxide dismutase (MnSOD)

6. High NaCl–induced activation of CDK5 increases phosphorylation of the osmoprotective transcription factor TonEBP/OREBP at threonine 135, which contributes to its rapid nuclear localization

7. High NaCl–induced activation of CDK5 increases phosphorylation of the osmoprotective transcription factor TonEBP/OREBP at threonine 135, which contributes to its rapid nuclear localization

8. Analysis of DNA breaks, DNA damage response, and apoptosis produced by high NaCl

9. High NaCl Promotes Cellular Senescence

10. Proteomic identification of proteins associated with the osmoregulatory transcription factor TonEBP/OREBP: functional effects of Hsp90 and PARP-1

11. Effects of expression of p53 and Gadd45 on osmotic tolerance of renal inner medullary cells

12. Mitochondrial reactive oxygen species contribute to high NaCl-induced activation of the transcription factor TonEBP/OREBP

13. Mitochondrial reactive oxygen species contribute to high NaCl-induced activation of the transcription factor TonEBP/OREBP

14. High NaCl increases TonEBP/OREBP mRNA and protein by stabilizing its mRNA

15. Ataxia telangiectasia-mutated, a DNA damage-inducible kinase, contributes to high NaCl-induced nuclear localization of transcription factor TonEBP/OREBP

16. Increased reactive oxygen species contribute to high NaCl-induced activation of the osmoregulatory transcription factor TonEBP/OREBP

17. DNA damage and osmotic regulation in the kidney

18. Hypertonic stress response

19. Greater tolerance of renal medullary cells for a slow increase in osmolality is associated with enhanced expression of HSP70 and other osmoprotective genes

20. Expression of osmotic stress-related genes in tissues of normal and hyposmotic rats

21. High NaCl causes Mre11 to leave the nucleus, disrupting DNA damage signaling and repair

22. Toxicity of Acetaminophen, Salicylic Acid, and Caffeine for First-Passage Rat Renal Inner Medullary Collecting Duct Cells

23. Three GADD45 isoforms contribute to hypertonic stress phenotype of murine renal inner medullary cells

24. Rate of increase of osmolality determines osmotic tolerance of mouse inner medullary epithelial cells

25. Proliferation and osmotic tolerance of renal inner medullary epithelial cells in vivo and in cell culture

26. Mitochondrial dysfunction is an early event in high-NaCl-induced apoptosis of mIMCD3 cells

27. Macromolecular Crowding as a Cell VolumeSensor

28. Osmotic regulation of gene expression

29. Renal osmoregulatory transport of compatible organic osmolytes

30. Distinct Regulation of Osmoprotective Genes in Yeast and Mammals

31. A standard nomenclature for structures of the kidney

32. Hyperosmolality Causes Growth Arrest of Murine Kidney Cells

33. ORE, a Eukaryotic Minimal Essential Osmotic Response Element

35. Urea and methylamines have similar effects on aldose reductase activity

36. Effects of glycine betaine and glycerophosphocholine on thermal stability of ribonuclease

37. ULTRASTRUCTURAL STUDIES OF VASOPRESSIN EFFECT ON ISOLATED PERFUSED RENAL COLLECTING TUBULES OF THE RABBIT

38. PATHS OF TRANSTUBULAR WATER FLOW IN ISOLATED RENAL COLLECTING TUBULES

39. Living with DNA Breaks is an Everyday Reality for Cells Adapted to High NaCl

42. Osmotic Stress and DNA Damage.

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