Product Specific References for Applications and Species
- Immunocytochemistry: Mouse | Rat
- Immunohistochemistry: Mouse | Rat
- Immunoprecipitation: Mouse | Rat
- Western Blot: Human | Mouse | Rat
Immunocytochemistry: Mouse | ||
PMID | Dilution | Publication |
33436646 | 1:200 | Flahaunt, A., et al. 2021. A metabolically stable apelin-17 analog decreases AVP-induced antidiuresis and improves hyponatremia. Nature Communications, 12(1), pp.1-14. |
Immunocytochemistry: Rat | ||
PMID | Dilution | Publication |
28668390 | 1:500 | Yui, N., et al. 2017. Ser-261 phospho-regulation is involved in pS256 and pS269-mediated aquaporin-2 apical translocation. Biochemical and Biophysical Research Communications. Aug 26;490(3):1039-1044. |
Immunohistochemistry: Mouse | ||
PMID | Dilution | Publication |
18606813 | 1:2000 | Hoffert, J.D., et al. 2008. Vasopressin-stimulated increase in phosphorylation at serine 269 potentiates plasma membrane retention of aquaporin 2. J Biol Chem. 2008 Sep 5; 283(36):24617-27. |
Immunohistochemistry: Rat | ||
PMID | Dilution | Publication |
26147297 | not listed | Rice, W.L., et al. 2015. Polarized Trafficking of AQP2 Revealed in Three Dimensional Epithelial Culture. PloS one, 10(7), e0131719. |
23559583 | 1:600 | Bogum, J., et al. 2013. Small-molecule screening identifies modulators of aquaporin-2 trafficking. Journal of the American Society of Nephrology, 24(5), 744-758. |
Immunoprecipitation: Mouse | ||
PMID | Dilution | Publication |
27889609 | 3 uL | Yui, N., et al. 2017. Aquaporin-2 Ser-261 phosphorylation is regulated in combination with Ser-256 and Ser-269 phosphorylation. Biochemical and biophysical research communications, 482(4), pp.524-529. |
Immunoprecipitation: Rat | ||
PMID | Dilution | Publication |
27889609 | 3 uL | Yui, N., et al. 2017. Aquaporin-2 Ser-261 phosphorylation is regulated in combination with Ser-256 and Ser-269 phosphorylation. Biochemical and biophysical research communications, 482(4), pp.524-529. |
Western Blot: Human | ||
PMID | Dilution | Publication |
32529500 | not listed | Sakai, M., et al. 2020. Phosphorylation profile of human AQP2 in urinary exosomes by LC–MS/MS phosphoproteomic analysis. Clinical and Experimental Nephrology, pp.1-8. |
32486031 | not listed | Ranieri, M., et al. 2020. The Vasopressin Receptor 2 Mutant R137L Linked to the Nephrogenic Syndrome of Inappropriate Antidiuresis (NSIAD) Signals through an Alternative Pathway that Increases AQP2 Membrane Targeting Independently of S256 Phosphorylation. Cells, 9(6), p.1354. |
Western Blot: Mouse | ||
PMID | Dilution | Publication |
38695074 | 1:1000 | Zuchowski, Y, et al. 2024. Kidney collecting duct-derived vasopressin is not essential for appropriate concentration or dilution of urine. American Journal of Physiology. Renal Physiology, F1091-F1100. |
36995926 | 1:1000 | Zuchowski, Y., et al. 2023. The Insulin Regulated Aminopeptidase (IRAP) is Required for Water Excretion in Response to Acute Hypotonic Stress. American Journal of Physiology. Renal Physiology, F521-F531. |
36326835 | 1:1000 | Arroyo, J.P., et al. 2022. Kidney Collecting Duct Cells Make Vasopressin In Response To NaCl Induced Hypertonicity. JCI Insight, . |
32529500 | not listed | Sakai, M., et al. 2020. Phosphorylation profile of human AQP2 in urinary exosomes by LC–MS/MS phosphoproteomic analysis. Clinical and Experimental Nephrology, pp.1-8. |
29046300 | 1:3000 | Lei, L., et al. 2018. Manganese promotes intracellular accumulation of AQP2 via modulating F-actin polymerization and reduces urinary concentration in mice. American Journal of Physiology-Renal Physiology, Oct 18: ajprenal-00391. |
27889609 | 1:500-1:1000 | Yui, N., et al. 2017. Aquaporin-2 Ser-261 phosphorylation is regulated in combination with Ser-256 and Ser-269 phosphorylation. Biochemical and biophysical research communications, 482(4), pp.524-529. |
27707708 | 1:1000 | Gao, Y., et al. 2016. Collecting duct-specific knockout of nitric oxide synthase 3 impairs water excretion in a sex-dependent manner. American Journal of Physiology-Renal Physiology, pp.ajprenal-00494. |
18606813 | 1:2000 | Hoffert, J.D., et al. 2008. Vasopressin-stimulated increase in phosphorylation at serine 269 potentiates plasma membrane retention of aquaporin 2. J Biol Chem. 2008 Sep 5; 283(36):24617-27. |
Western Blot: Rat | ||
PMID | Dilution | Publication |
37047509 | 1:1000 | Wang, Y., et al. 2023. Phosphatases Decrease Water and Urea Permeability in Rat Inner Medullary Collecting Ducts. International Journal of Molecular Sciences, . |
31994353 | 1:1000 | Masuda, T., et al. 2020. Osmotic diuresis by SGLT2 inhibition stimulates vasopressin‐induced water reabsorption to maintain body fluid volume. Physiological Reports, 8(2), p.e14360. |
29046300 | 1:3000 | Lei, L., et al. 2018. Manganese promotes intracellular accumulation of AQP2 via modulating F-actin polymerization and reduces urinary concentration in mice. American Journal of Physiology-Renal Physiology, Oct 18:ajprenal-00391. |
28668390 | 1:500 | Yui, N., et al. 2017. Ser-261 phospho-regulation is involved in pS256 and pS269-mediated aquaporin-2 apical translocation. Biochemical and Biophysical Research Communications. Aug 26; 490(3):1039-1044. |
27889609 | 1:500-1:1000 | Yui, N., et al. 2017. Aquaporin-2 Ser-261 phosphorylation is regulated in combination with Ser-256 and Ser-269 phosphorylation. Biochemical and biophysical research communications, 482(4), pp.524-529. |
27534994 | not listed | Al-Butaineh, M.M, et al. 2016. Activation of the Metabolic Sensor AMP-Activated Protein Kinase Inhibits Aquaporin-2 Function in Kidney Principal Cells. American Journal of Physiology-Renal Physiology, ajprenal-00308. |
27185292 | not listed | Speed, J.S, et al. 2016. In vivo organ specific drug delivery with implantable peristaltic pumps. Scientific reports, 6, p.26251. |
26574044 | 1:5000 | Mamenko, M., et al. 2016. Defective store-operated calcium entry causes partial nephrogenic diabetes insipidus. Journal of the American Society of Nephrology, 27(7), pp.2035-2048. |
26147297 | not listed | Rice, W.L., et al. 2015. Polarized Trafficking of AQP2 Revealed in Three Dimensional Epithelial Culture. PloS one, 10(7), e0131719. |
25651562 | 1:1000 | Choi,H. J., et al. 2015. Extracellular pH affects phosphorylation and intracellular trafficking of AQP2 in inner medullary collecting duct cells. Am J Physiol Renal Physiol 308(7):F737-48. |
24259510 | 1:1000 | Hoffert, J.D., et al. 2014. Global analysis of the effects of the V2 receptor antagonist satavaptan on protein phosphorylation in collecting duct. American Journal of Physiology-Renal Physiology, 306(4), 410-421. |
23559583 | 1:600 | Bogum, J., et al. 2013. Small-molecule screening identifies modulators of aquaporin-2 trafficking. Journal of the American Society of Nephrology, 24(5), 744-758. |