Literature DB >> 15590980

Reactive oxygen species blockade and action of insulin on expression of angiotensinogen gene in proximal tubular cells.

Tusty-Jiuan Hsieh1, Pierre Fustier, Chih-Chang Wei, Shao-Ling Zhang, Janos G Filep, Shiow-Shiu Tang, Julie R Ingelfinger, I George Fantus, Pavel Hamet, John S D Chan.   

Abstract

We reported previously that insulin inhibits the stimulatory effect of high glucose on the expression of angiotensinogen (ANG) gene in both rat immortalized renal proximal tubular cells (IRPTCs) and non-diabetic rat renal proximal tubular cells (RPTCs), but has no effect in diabetic rat RPTCs. In the present study we investigated whether hyperglycaemia-induced resistance to the insulin-induced inhibition of expression of the ANG gene is mediated via the generation of reactive oxygen species (ROS) in RPTCs. Rat IRPTCs were cultured for 2 weeks in high-glucose (25 mM) or normal-glucose (5 mM) medium plus angiotensin II (Ang II) with or without a superoxide scavenger (tiron), or inhibitors of: NADPH oxidase (diphenylene iodinium, DPI), Ang II type 1 and 2 receptors (losartan and PD123319), angiotensin-converting enzyme (perindopril), protein kinase C (GF 109203X), or glutamine:fructose-6-phosphate amino-transferase (azaserine). Cellular generation of ROS, and ANG and renin mRNA levels were assessed by lucigenin assay and specific reverse transcriptase-PCR respectively. Phosphorylation of p44/42 mitogen-activated protein kinase (p44/42 MAPK) was evaluated by western blotting. Prolonged exposure of IRPTCs to high concentrations of glucose or Ang II evoked generation of ROS and resistance to the insulin-induced inhibition of expression of the ANG gene and of p44/42 MAPK phosphorylation. Co-incubation of IRPTCs with tiron, DPI, losartan, PD123319, perindopril, GF 109203X or azaserine prevented ROS generation, restoring the inhibitory action of insulin on ANG gene expression and on p44/42 MAPK phosphorylation. In conclusion, our studies demonstrate that blockade of both ROS generation and activation of the intrarenal renin-angiotensin system improves the inhibitory action of insulin on ANG gene expression in IRPTCs in conditions of high glucose.

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Year:  2004        PMID: 15590980     DOI: 10.1677/joe.1.05871

Source DB:  PubMed          Journal:  J Endocrinol        ISSN: 0022-0795            Impact factor:   4.286


  22 in total

1.  Urinary angiotensinogen increases in the absence of overt renal injury in high fat diet-induced type 2 diabetic mice.

Authors:  Virginia Reverte; Venkateswara R Gogulamudi; Carla B Rosales; Diego C Musial; Sabrina R Gonsalez; Alberto J Parra-Vitela; Michelle Galeas-Pena; Venkata N Sure; Bruna Visniauskas; Sarah H Lindsey; Prasad V G Katakam; Minolfa C Prieto
Journal:  J Diabetes Complications       Date:  2019-10-05       Impact factor: 2.852

2.  Reactive oxygen species promote caspase-12 expression and tubular apoptosis in diabetic nephropathy.

Authors:  Marie-Luise Brezniceanu; Cara J Lau; Nicolas Godin; Isabelle Chénier; Alain Duclos; Jean Ethier; Janos G Filep; Julie R Ingelfinger; Shao-Ling Zhang; John S D Chan
Journal:  J Am Soc Nephrol       Date:  2010-03-18       Impact factor: 10.121

3.  Canagliflozin Prevents Intrarenal Angiotensinogen Augmentation and Mitigates Kidney Injury and Hypertension in Mouse Model of Type 2 Diabetes Mellitus.

Authors:  T Cooper Woods; Ryousuke Satou; Kayoko Miyata; Akemi Katsurada; Courtney M Dugas; Natasha C Klingenberg; Vivian A Fonseca; L Gabriel Navar
Journal:  Am J Nephrol       Date:  2019-03-28       Impact factor: 3.754

4.  Advanced Glycation End Products Stimulate Angiotensinogen Production in Renal Proximal Tubular Cells.

Authors:  Joseph M Garagliano; Akemi Katsurada; Kayoko Miyata; Andrei V Derbenev; Andrea Zsombok; L Gabriel Navar; Ryousuke Satou
Journal:  Am J Med Sci       Date:  2018-10-24       Impact factor: 2.378

5.  Binge ethanol intake in chronically exposed rat liver decreases LDL-receptor and increases angiotensinogen gene expression.

Authors:  Annayya R Aroor; Shivendra D Shukla
Journal:  World J Hepatol       Date:  2011-09-27

6.  Blockade of sodium-glucose cotransporter 2 suppresses high glucose-induced angiotensinogen augmentation in renal proximal tubular cells.

Authors:  Ryousuke Satou; Michael W Cypress; T Cooper Woods; Akemi Katsurada; Courtney M Dugas; Vivian A Fonseca; L Gabriel Navar
Journal:  Am J Physiol Renal Physiol       Date:  2019-11-04

7.  Role of activated intrarenal reactive oxygen species and renin-angiotensin system in IgA nephropathy model mice.

Authors:  Naro Ohashi; Akemi Katsurada; Kayoko Miyata; Ryousuke Satou; Toshie Saito; Maki Urushihara; Hiroyuki Kobori
Journal:  Clin Exp Pharmacol Physiol       Date:  2009-03-02       Impact factor: 2.557

Review 8.  Redox control of renal function and hypertension.

Authors:  Ravi Nistala; Adam Whaley-Connell; James R Sowers
Journal:  Antioxid Redox Signal       Date:  2008-12       Impact factor: 8.401

9.  Intrarenal mouse renin-angiotensin system during ANG II-induced hypertension and ACE inhibition.

Authors:  Romer A Gonzalez-Villalobos; Ryousuke Satou; Naro Ohashi; Laura C Semprun-Prieto; Akemi Katsurada; Catherine Kim; G M Upchurch; Minolfa C Prieto; Hiroyuki Kobori; L Gabriel Navar
Journal:  Am J Physiol Renal Physiol       Date:  2009-10-21

Review 10.  Insulin signaling and life span.

Authors:  Angelo Avogaro; Saula Vigili de Kreutzenberg; Gian Paolo Fadini
Journal:  Pflugers Arch       Date:  2009-09-13       Impact factor: 3.657

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