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Publication : Liver X receptor β increases aquaporin 2 protein level via a posttranscriptional mechanism in renal collecting ducts.

First Author  Su W Year  2017
Journal  Am J Physiol Renal Physiol Volume  312
Issue  4 Pages  F619-F628
PubMed ID  28052875 Mgi Jnum  J:281909
Mgi Id  MGI:6368468 Doi  10.1152/ajprenal.00564.2016
Citation  Su W, et al. (2017) Liver X receptor beta increases aquaporin 2 protein level via a posttranscriptional mechanism in renal collecting ducts. Am J Physiol Renal Physiol 312(4):F619-F628
abstractText  Liver X receptors (LXRs) including LXRalpha and LXRbeta are nuclear receptor transcription factors and play an important role in lipid and glucose metabolism. It has been previously reported that mice lacking LXRbeta but not LXRalpha develop a severe urine concentrating defect, likely via a central mechanism. Here we provide evidence that LXRbeta regulates water homeostasis through increasing aquaporin 2 (AQP2) protein levels in renal collecting ducts. LXRbeta(-/-) mice exhibited a reduced response to desmopressin (dDAVP) stimulation, suggesting that the diabetes insipidus phenotype is of both central and nephrogenic origin. AQP2 protein abundance in the renal inner medulla was significantly reduced in LXRbeta(-/-) mice but with little change in AQP2 mRNA levels. In vitro studies showed that AQP2 protein levels were elevated upon LXR agonist treatment in both primary cultured mouse inner medullary duct cells (mIMCD) and the mIMCD3 cell line with stably expressed AQP2. In addition, LXR agonists including TO901317 and GW3965 failed to induce AQP2 gene transcription but diminished its protein ubiquitination in primary cultured mIMCD cells, thereby inhibiting its degradation. Moreover, LXR activation-induced AQP2 protein expression was abolished by the protease inhibitor MG132 and the ubiquitination-deficient AQP2 (K270R). Taken together, the present study demonstrates that activation of LXRbeta increases AQP2 protein levels in the renal collecting ducts via a posttranscriptional mechanism. As such, LXRbeta represents a key regulator of body water homeostasis.
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