Literature DB >> 11952228

Adaptation of kidney medulla to hypertonicity: role of the transcription factor TonEBP.

Seung Kyoon Woo1, H Moo Kwon.   

Abstract

The osmolality of the mammalian kidney medulla is very high. The high osmolality provides the driving force for water reabsorption and urinary concentration, key functions of the kidney for maintaining proper body fluid volume and blood pressure. Salt and urea are the major solutes in the renal medullary interstitium. Unfortunately, high salt (hypertonicity) causes DNA damage and cell death. In response, the renal medullary cells adapt to the hypertonicity by accumulating compatible osmolytes. A regulatory protein, tonicity-responsive enhancer binding protein (TonEBP), plays a central role in the accumulation of these compatible osmolytes by stimulating genes whose products either actively transport or synthesize the appropriate osmolytes. TonEBP is active under isotonic conditions. It responds to both an increase and a decrease in ambient tonicity, in opposite directions, which involves changes in its abundance and nucleocytoplasmic distribution. In the kidney medulla, however, nucleocytoplasmic distribution is the major site of control, under normal conditions of diuresis and antidiuresis.

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Year:  2002        PMID: 11952228     DOI: 10.1016/s0074-7696(02)15009-1

Source DB:  PubMed          Journal:  Int Rev Cytol        ISSN: 0074-7696


  13 in total

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4.  Effects of 2-bromoethanamine on TonEBP expression and its possible role in induction of renal papillary necrosis in mice.

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5.  CDK5/NFAT5-Regulated Transporters Involved in Osmoregulation in Fejervarya cancrivora.

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6.  ZAC1 is up-regulated by hypertonicity and decreases sorbitol dehydrogenase expression, allowing accumulation of sorbitol in kidney cells.

Authors:  Miguel A Lanaspa; Ana Andres-Hernando; Christopher J Rivard; Yue Dai; Nanxing Li; Tomas Berl
Journal:  J Biol Chem       Date:  2009-05-07       Impact factor: 5.157

7.  Nucleoporin 88 (Nup88) is regulated by hypertonic stress in kidney cells to retain the transcription factor tonicity enhancer-binding protein (TonEBP) in the nucleus.

Authors:  Ana Andres-Hernando; Miguel A Lanaspa; Christopher J Rivard; Tomas Berl
Journal:  J Biol Chem       Date:  2008-07-07       Impact factor: 5.157

8.  NFAT5-dependent expression of AQP4 in astrocytes.

Authors:  Min-Hee Yi; Young Sook Lee; Joon Won Kang; Soo Jin Kim; Sang-Ha Oh; Yong Min Kim; Young Ho Lee; Sang Do Lee; Dong Woon Kim
Journal:  Cell Mol Neurobiol       Date:  2012-11-20       Impact factor: 5.046

9.  Role of NFAT5 in inflammatory disorders associated with osmotic stress.

Authors:  Wolfgang Neuhofer
Journal:  Curr Genomics       Date:  2010-12       Impact factor: 2.236

Review 10.  NFAT5-Mediated Signalling Pathways in Viral Infection and Cardiovascular Dysfunction.

Authors:  Guangze Zhao; Sana Aghakeshmiri; Yankuan T Chen; Huifang M Zhang; Fione Yip; Decheng Yang
Journal:  Int J Mol Sci       Date:  2021-05-04       Impact factor: 5.923

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