Literature DB >> 23100220

NADPH-oxidase 4 protects against kidney fibrosis during chronic renal injury.

Stellor Nlandu Khodo1, Eva Dizin, Gaetan Sossauer, Ildiko Szanto, Pierre-Yves Martin, Eric Feraille, Karl Heinz Krause, Sophie de Seigneux.   

Abstract

NADPH oxidases synthesize reactive oxygen species that may participate in fibrosis progression. NOX4 and NOX2 are NADPH oxidases expressed in the kidneys, with the former being the major renal isoform, but their contribution to renal disease is not well understood. Here, we used the unilateral urinary obstruction model of chronic renal injury to decipher the role of these enzymes using wild-type, NOX4-, NOX2-, and NOX4/NOX2-deficient mice. Compared with wild-type mice, NOX4-deficient mice exhibited more interstitial fibrosis and tubular apoptosis after obstruction, with lower interstitial capillary density and reduced expression of hypoxia-inducible factor-1α and vascular endothelial growth factor in obstructed kidneys. Furthermore, NOX4-deficient kidneys exhibited increased oxidative stress. With NOX4 deficiency, renal expression of other NOX isoforms was not altered but NRF2 protein expression was reduced under both basal and obstructed conditions. Concomitant deficiency of NOX2 did not modify the phenotype exhibited by NOX4-deficient mice after obstruction. NOX4 silencing in a mouse collecting duct (mCCD(cl1)) cell line increased TGF-β1-induced apoptosis and decreased NRF2 protein along with expression of its target genes. In addition, NOX4 silencing decreased hypoxia-inducible factor-1α and expression of its target genes in response to hypoxia. In summary, these results demonstrate that the absence of NOX4 promotes kidney fibrosis, independent of NOX2, through enhanced tubular cell apoptosis, decreased microvascularization, and enhanced oxidative stress. Thus, NOX4 is crucial for the survival of kidney tubular cells under injurious conditions.

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Year:  2012        PMID: 23100220      PMCID: PMC3507365          DOI: 10.1681/ASN.2012040373

Source DB:  PubMed          Journal:  J Am Soc Nephrol        ISSN: 1046-6673            Impact factor:   10.121


  34 in total

1.  Reactive oxygen species generated at mitochondrial complex III stabilize hypoxia-inducible factor-1alpha during hypoxia: a mechanism of O2 sensing.

Authors:  N S Chandel; D S McClintock; C E Feliciano; T M Wood; J A Melendez; A M Rodriguez; P T Schumacker
Journal:  J Biol Chem       Date:  2000-08-18       Impact factor: 5.157

2.  Number of interstitial capillary cross-sections assessed by monoclonal antibodies: relation to interstitial damage.

Authors:  D Serón; E Alexopoulos; M J Raftery; B Hartley; J S Cameron
Journal:  Nephrol Dial Transplant       Date:  1990       Impact factor: 5.992

3.  Structural-functional correlations in renal disease. II. The correlations.

Authors:  L I Schainuck; G E Striker; R E Cutler; E P Benditt
Journal:  Hum Pathol       Date:  1970-12       Impact factor: 3.466

4.  Antibodies against vascular endothelial growth factor improve early renal dysfunction in experimental diabetes.

Authors:  An S DE Vriese; Ronald G Tilton; Marlies Elger; Clifford C Stephan; Wilhelm Kriz; Norbert H Lameire
Journal:  J Am Soc Nephrol       Date:  2001-05       Impact factor: 10.121

5.  The definition, classification, and prognosis of chronic kidney disease: a KDIGO Controversies Conference report.

Authors:  Andrew S Levey; Paul E de Jong; Josef Coresh; Meguid El Nahas; Brad C Astor; Kunihiro Matsushita; Ron T Gansevoort; Bertram L Kasiske; Kai-Uwe Eckardt
Journal:  Kidney Int       Date:  2010-12-08       Impact factor: 10.612

6.  Identification of renox, an NAD(P)H oxidase in kidney.

Authors:  M Geiszt; J B Kopp; P Várnai; T L Leto
Journal:  Proc Natl Acad Sci U S A       Date:  2000-07-05       Impact factor: 11.205

7.  A key role for NOX4 in epithelial cell death during development of lung fibrosis.

Authors:  Stephanie Carnesecchi; Christine Deffert; Yves Donati; Olivier Basset; Boris Hinz; Olivier Preynat-Seauve; Cecile Guichard; Jack L Arbiser; Botond Banfi; Jean-Claude Pache; Constance Barazzone-Argiroffo; Karl-Heinz Krause
Journal:  Antioxid Redox Signal       Date:  2011-05-25       Impact factor: 8.401

8.  Amelioration of long-term renal changes in obese type 2 diabetic mice by a neutralizing vascular endothelial growth factor antibody.

Authors:  Allan Flyvbjerg; Frederik Dagnaes-Hansen; An S De Vriese; Bieke F Schrijvers; Ronald G Tilton; Ruth Rasch
Journal:  Diabetes       Date:  2002-10       Impact factor: 9.461

9.  Peritubular capillary regression during the progression of experimental obstructive nephropathy.

Authors:  Ryuji Ohashi; Akira Shimizu; Yukinari Masuda; Hiroshi Kitamura; Masamichi Ishizaki; Yuichi Sugisaki; Nobuaki Yamanaka
Journal:  J Am Soc Nephrol       Date:  2002-07       Impact factor: 10.121

10.  Increased expression of TGF-beta 1 mRNA in the obstructed kidney of rats with unilateral ureteral ligation.

Authors:  H Kaneto; J Morrissey; S Klahr
Journal:  Kidney Int       Date:  1993-08       Impact factor: 10.612

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  59 in total

1.  Myocardin-related Transcription Factor Regulates Nox4 Protein Expression: LINKING CYTOSKELETAL ORGANIZATION TO REDOX STATE.

Authors:  Matthew Rozycki; Janne Folke Bialik; Pam Speight; Qinghong Dan; Teresa E T Knudsen; Stephen G Szeto; Darren A Yuen; Katalin Szászi; Stine F Pedersen; András Kapus
Journal:  J Biol Chem       Date:  2015-11-10       Impact factor: 5.157

Review 2.  Diabetes and Kidney Disease: Role of Oxidative Stress.

Authors:  Jay C Jha; Claudine Banal; Bryna S M Chow; Mark E Cooper; Karin Jandeleit-Dahm
Journal:  Antioxid Redox Signal       Date:  2016-04-01       Impact factor: 8.401

Review 3.  Therapeutic potential of NADPH oxidase 1/4 inhibitors.

Authors:  G Teixeira; C Szyndralewiez; S Molango; S Carnesecchi; F Heitz; P Wiesel; J M Wood
Journal:  Br J Pharmacol       Date:  2016-07-14       Impact factor: 8.739

4.  Hydrogen sulfide inhibits high glucose-induced NADPH oxidase 4 expression and matrix increase by recruiting inducible nitric oxide synthase in kidney proximal tubular epithelial cells.

Authors:  Hak Joo Lee; Doug Yoon Lee; Meenalakshmi M Mariappan; Denis Feliers; Goutam Ghosh-Choudhury; Hanna E Abboud; Yves Gorin; Balakuntalam S Kasinath
Journal:  J Biol Chem       Date:  2017-02-10       Impact factor: 5.157

5.  Nox2 is a mediator of ischemia reperfusion injury.

Authors:  A S Karim; S R Reese; N A Wilson; L M Jacobson; W Zhong; A Djamali
Journal:  Am J Transplant       Date:  2015-06-23       Impact factor: 8.086

6.  Reversal of persistent fibrosis in aging by targeting Nox4-Nrf2 redox imbalance.

Authors:  Louise Hecker; Naomi J Logsdon; Deepali Kurundkar; Ashish Kurundkar; Karen Bernard; Thomas Hock; Eric Meldrum; Yan Y Sanders; Victor J Thannickal
Journal:  Sci Transl Med       Date:  2014-04-09       Impact factor: 17.956

7.  Role of Nox2 in diabetic kidney disease.

Authors:  Young-Hyun You; Shinichi Okada; San Ly; Karin Jandeleit-Dahm; David Barit; Tamehachi Namikoshi; Kumar Sharma
Journal:  Am J Physiol Renal Physiol       Date:  2013-02-06

Review 8.  NADPH oxidases in lung health and disease.

Authors:  Karen Bernard; Louise Hecker; Tracy R Luckhardt; Guangjie Cheng; Victor J Thannickal
Journal:  Antioxid Redox Signal       Date:  2014-01-03       Impact factor: 8.401

Review 9.  Nox4 and diabetic nephropathy: with a friend like this, who needs enemies?

Authors:  Yves Gorin; Karen Block
Journal:  Free Radic Biol Med       Date:  2013-03-23       Impact factor: 7.376

10.  The angiotensin-converting enzyme 2/angiotensin (1-7)/Mas axis protects against lung fibroblast migration and lung fibrosis by inhibiting the NOX4-derived ROS-mediated RhoA/Rho kinase pathway.

Authors:  Ying Meng; Ting Li; Gao-Su Zhou; Yan Chen; Chang-Hui Yu; Miao-Xia Pang; Wei Li; Yang Li; Wen-Yong Zhang; Xu Li
Journal:  Antioxid Redox Signal       Date:  2014-10-02       Impact factor: 8.401

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