Literature DB >> 25138219

Nod-like receptor protein 3 (NLRP3) inflammasome activation and podocyte injury via thioredoxin-interacting protein (TXNIP) during hyperhomocysteinemia.

Justine M Abais1, Min Xia2, Guangbi Li2, Yang Chen2, Sabena M Conley2, Todd W B Gehr3, Krishna M Boini2, Pin-Lan Li2.   

Abstract

NADPH oxidase-derived reactive oxygen species (ROS) have been reported to activate NLRP3 inflammasomes resulting in podocyte and glomerular injury during hyperhomocysteinemia (hHcys). However, the mechanism by which the inflammasome senses ROS is still unknown in podocytes upon hHcys stimulation. The current study explored whether thioredoxin-interacting protein (TXNIP), an endogenous inhibitor of the antioxidant thioredoxin and ROS sensor, mediates hHcys-induced NLRP3 inflammasome activation and consequent glomerular injury. In cultured podocytes, size exclusion chromatography and confocal microscopy showed that inhibition of TXNIP by siRNA or verapamil prevented Hcys-induced TXNIP protein recruitment to form NLRP3 inflammasomes and abolished Hcys-induced increases in caspase-1 activity and IL-1β production. TXNIP inhibition protected podocytes from injury as shown by normal expression levels of podocyte markers, podocin and desmin. In vivo, adult C57BL/6J male mice were fed a folate-free diet for 4 weeks to induce hHcys, and TXNIP was inhibited by verapamil (1 mg/ml in drinking water) or by local microbubble-ultrasound TXNIP shRNA transfection. Evidenced by immunofluorescence and co-immunoprecipitation studies, glomerular inflammasome formation and TXNIP binding to NLRP3 were markedly increased in mice with hHcys but not in TXNIP shRNA-transfected mice or those receiving verapamil. Furthermore, TXNIP inhibition significantly reduced caspase-1 activity and IL-1β production in glomeruli of mice with hHcys. Correspondingly, TXNIP shRNA transfection and verapamil attenuated hHcys-induced proteinuria, albuminuria, glomerular damage, and podocyte injury. In conclusion, our results demonstrate that TXNIP binding to NLRP3 is a key signaling mechanism necessary for hHcys-induced NLRP3 inflammasome formation and activation and subsequent glomerular injury.
© 2014 by The American Society for Biochemistry and Molecular Biology, Inc.

Entities:  

Keywords:  Glomerulosclerosis; Homocysteine; Inflammation; Kidney; Podocyte; Redox Signaling; Thioredoxin

Mesh:

Substances:

Year:  2014        PMID: 25138219      PMCID: PMC4175351          DOI: 10.1074/jbc.M114.567537

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  51 in total

1.  Nutri-epigenetics ameliorates blood-brain barrier damage and neurodegeneration in hyperhomocysteinemia: role of folic acid.

Authors:  Anuradha Kalani; Pradip K Kamat; Srikanth Givvimani; Kasey Brown; Naira Metreveli; Suresh C Tyagi; Neetu Tyagi
Journal:  J Mol Neurosci       Date:  2014-02       Impact factor: 3.444

2.  Activation of inflammasomes in podocyte injury of mice on the high fat diet: Effects of ASC gene deletion and silencing.

Authors:  Krishna M Boini; Min Xia; Justin M Abais; Guangbi Li; Ashley L Pitzer; Todd W B Gehr; Yang Zhang; Pin-Lan Li
Journal:  Biochim Biophys Acta       Date:  2014-02-05

3.  Implications of hyperhomocysteinemia in glomerular sclerosis in hypertension.

Authors:  Ningjun Li; Ya-Fei Chen; Ai-Ping Zou
Journal:  Hypertension       Date:  2002-02       Impact factor: 10.190

4.  Nlrp3 is a key modulator of diet-induced nephropathy and renal cholesterol accumulation.

Authors:  Pieter J Bakker; Loes M Butter; Lotte Kors; Gwendoline J D Teske; Jan Aten; Fayyaz S Sutterwala; Sandrine Florquin; Jaklien C Leemans
Journal:  Kidney Int       Date:  2013-12-18       Impact factor: 10.612

5.  Human immunodeficiency virus-1 induces loss of contact inhibition in podocytes.

Authors:  Elissa J Schwartz; Andrea Cara; Hans Snoeck; Michael D Ross; Masaaki Sunamoto; Jochen Reiser; Peter Mundel; Paul E Klotman
Journal:  J Am Soc Nephrol       Date:  2001-08       Impact factor: 10.121

6.  Folic acid attenuates hyperhomocysteinemia-induced glomerular damage in rats.

Authors:  Lu Cao; Xiaoying Lou; Zhaoxia Zou; Nana Mou; Weikang Wu; Xiongqing Huang; Hongmei Tan
Journal:  Microvasc Res       Date:  2013-07-13       Impact factor: 3.514

7.  Early mechanisms of renal injury in hypercholesterolemic or hypertriglyceridemic rats.

Authors:  Jaap A Joles; Uta Kunter; Ulf Janssen; Wilhelm Kriz; Ton J Rabelink; Hein A Koomans; Jürgen Floege
Journal:  J Am Soc Nephrol       Date:  2000-04       Impact factor: 10.121

8.  NLRP3 deficiency ameliorates neurovascular damage in experimental ischemic stroke.

Authors:  Fan Yang; Ziying Wang; Xinbing Wei; Huirong Han; Xianfang Meng; Yan Zhang; Weichen Shi; Fengli Li; Tao Xin; Qi Pang; Fan Yi
Journal:  J Cereb Blood Flow Metab       Date:  2014-01-15       Impact factor: 6.200

9.  Targeting the unfolded protein response, XBP1, and the NLRP3 inflammasome in fibrosis and cancer.

Authors:  Beth Overley-Adamson; Carol M Artlett; Connie Stephens; Sihem Sassi-Gaha; Ransome D Weis; James D Thacker
Journal:  Cancer Biol Ther       Date:  2014-02-04       Impact factor: 4.742

10.  Autophagy maturation associated with CD38-mediated regulation of lysosome function in mouse glomerular podocytes.

Authors:  Jing Xiong; Min Xia; Ming Xu; Yang Zhang; Justine M Abais; Guangbi Li; Christopher R Riebling; Joseph K Ritter; Krishna M Boini; Pin-Lan Li
Journal:  J Cell Mol Med       Date:  2013-11-17       Impact factor: 5.310

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  55 in total

1.  NLRP3 inflammasome as a novel target for docosahexaenoic acid metabolites to abrogate glomerular injury.

Authors:  Guangbi Li; Zhida Chen; Owais M Bhat; Qinghua Zhang; Justine M Abais-Battad; Sabena M Conley; Joseph K Ritter; Pin-Lan Li
Journal:  J Lipid Res       Date:  2017-04-12       Impact factor: 5.922

2.  Contribution of guanine nucleotide exchange factor Vav2 to NLRP3 inflammasome activation in mouse podocytes during hyperhomocysteinemia.

Authors:  Sabena M Conley; Justine M Abais-Battad; Xinxu Yuan; Qinghua Zhang; Krishna M Boini; Pin-Lan Li
Journal:  Free Radic Biol Med       Date:  2017-02-11       Impact factor: 7.376

Review 3.  An update on the role of the inflammasomes in the pathogenesis of kidney diseases.

Authors:  Murthy N Darisipudi; Felix Knauf
Journal:  Pediatr Nephrol       Date:  2015-07-16       Impact factor: 3.714

Review 4.  Links between coagulation, inflammation, regeneration, and fibrosis in kidney pathology.

Authors:  Beatriz Suárez-Álvarez; Helen Liapis; Hans-Joachim Anders
Journal:  Lab Invest       Date:  2016-01-11       Impact factor: 5.662

5.  Downregulation of microRNA-429 contributes to angiotensin II-induced profibrotic effect in rat kidney.

Authors:  Zhengchao Wang; Qing Zhu; Weili Wang; Junping Hu; Pin-Lan Li; Fan Yi; Ningjun Li
Journal:  Am J Physiol Renal Physiol       Date:  2018-08-22

Review 6.  Immunity and inflammation in diabetic kidney disease: translating mechanisms to biomarkers and treatment targets.

Authors:  Raimund Pichler; Maryam Afkarian; Brad P Dieter; Katherine R Tuttle
Journal:  Am J Physiol Renal Physiol       Date:  2016-08-24

Review 7.  Redox regulation of NLRP3 inflammasomes: ROS as trigger or effector?

Authors:  Justine M Abais; Min Xia; Yang Zhang; Krishna M Boini; Pin-Lan Li
Journal:  Antioxid Redox Signal       Date:  2015-01-19       Impact factor: 8.401

Review 8.  Inflammasome Activation in Chronic Glomerular Diseases.

Authors:  Sabena M Conley; Justine M Abais; Krishna M Boini; Pin-Lan Li
Journal:  Curr Drug Targets       Date:  2017       Impact factor: 3.465

Review 9.  Inflammasomes in the Pathophysiology of Kidney Diseases.

Authors:  Humaira Masood; Ruochen Che; Aihua Zhang
Journal:  Kidney Dis (Basel)       Date:  2015-09-04

10.  Protective Action of Anandamide and Its COX-2 Metabolite against l-Homocysteine-Induced NLRP3 Inflammasome Activation and Injury in Podocytes.

Authors:  Guangbi Li; Min Xia; Justine M Abais; Krishna Boini; Pin-Lan Li; Joseph K Ritter
Journal:  J Pharmacol Exp Ther       Date:  2016-05-11       Impact factor: 4.030

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