Literature DB >> 16804105

Silencing and overexpression of the gamma-subunit of Na-K-ATPase directly affect survival of IMCD3 cells in response to hypertonic stress.

Juan M Capasso1, Christopher J Rivard, Tomas Berl.   

Abstract

The gamma-subunit of Na-K-ATPase is robustly expressed in inner medullary collecting duct (IMCD)3 cells either acutely challenged or adapted to hypertonicity but not under isotonic conditions. Circumstantial evidence suggests that this protein may be important for the survival of renal cells in a hypertonic environment. However, no direct proof for such a contention has been forthcoming. The complete mRNA sequences of either gamma-subunit isoforms were spliced into an expression vector and transfected into IMCD3 cells. Multiple clones stably expressed gamma-subunit protein under isotonic conditions. Clones expressing the gamma(b) isoform showed enhanced survival at lethal acute hypertonicity compared with either gamma(a) isoform or empty vector (control) expressing clones. We also evaluated the loss of gamma-subunit expression on the survival of IMCD3 cells exposed to hypertonicity employing silencing RNA techniques. Multiple stable gamma-subunit-specific siRNA clones were obtained and exposed to sublethal hypertonicity. Under these conditions, both the level of gamma mRNA and protein was essentially undetectable. The impact of silencing gamma-subunit expression resulted in a 70% reduction at 48 h (P < 0.01) in cell survival compared with empty vector (control) clones. gamma siRNA clones showed a 45% decrease in myo-inositol uptake compared with controls after an 18-h exposure to sublethal hypertonicity. Taken together, these data demonstrate a direct and critical role of the gamma-subunit on IMCD3 cell survival and/or adaptation in response to ionic hypertonic stress.

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Year:  2006        PMID: 16804105     DOI: 10.1152/ajprenal.00077.2006

Source DB:  PubMed          Journal:  Am J Physiol Renal Physiol        ISSN: 1522-1466


  5 in total

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Authors:  Neeraj Kumar Mishra; Yoav Peleg; Erica Cirri; Talya Belogus; Yael Lifshitz; Dennis R Voelker; Hans-Juergen Apell; Haim Garty; Steven J D Karlish
Journal:  J Biol Chem       Date:  2011-01-12       Impact factor: 5.157

2.  A genomic-based approach identifies FXYD domain containing ion transport regulator 2 (FXYD2)gammaa as a pancreatic beta cell-specific biomarker.

Authors:  D Flamez; I Roland; A Berton; B Kutlu; D Dufrane; M C Beckers; E De Waele; I Rooman; L Bouwens; A Clark; M Lonneux; J F Jamar; S Goldman; D Maréchal; N Goodman; P Gianello; C Van Huffel; I Salmon; D L Eizirik
Journal:  Diabetologia       Date:  2010-04-09       Impact factor: 10.122

Review 3.  How do kidney cells adapt to survive in hypertonic inner medulla?

Authors:  Tomas Berl
Journal:  Trans Am Clin Climatol Assoc       Date:  2009

Review 4.  Renal Mg handling, FXYD2 and the central role of the Na,K-ATPase.

Authors:  Haim Mayan; Zvi Farfel; Steven J D Karlish
Journal:  Physiol Rep       Date:  2018-09

5.  Overexpression of DJ-1 alleviates autosomal dominant polycystic kidney disease by regulating cell proliferation, apoptosis, and mitochondrial metabolism in vitro and in vivo.

Authors:  Zhongxin Li; Jingjing Zhou; Yan Li; Fan Yang; Xiaoying Lian; Wenhu Liu
Journal:  Ann Transl Med       Date:  2020-09
  5 in total

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