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Renal tubule-specific Atgl deletion links kidney lipid metabolism to glucagon-like peptide 1 and insulin secretion independent of renal inflammation or lipotoxicity.
Fernandes, Maria F; Aristizabal-Henao, Juan J; Marvyn, Phillip M; M'Hiri, Iman; Wiens, Meghan A; Hoang, Monica; Sebastian, Manuel; Nachbar, Renato; St-Pierre, Philippe; Diaguarachchige De Silva, Kalsha; Wood, Geoffrey A; Joseph, Jamie W; Doucette, Christine A; Marette, André; Stark, Ken D; Duncan, Robin E.
Afiliação
  • Fernandes MF; Department of Kinesiology and Health Sciences, University of Waterloo, Ontario, Canada.
  • Aristizabal-Henao JJ; Department of Kinesiology and Health Sciences, University of Waterloo, Ontario, Canada.
  • Marvyn PM; Department of Kinesiology and Health Sciences, University of Waterloo, Ontario, Canada.
  • M'Hiri I; Department of Kinesiology and Health Sciences, University of Waterloo, Ontario, Canada.
  • Wiens MA; Department of Kinesiology and Health Sciences, University of Waterloo, Ontario, Canada.
  • Hoang M; School of Pharmacy, University of Waterloo, Ontario, Canada.
  • Sebastian M; Max Rady College of Medicine, University of Manitoba, Manitoba, Canada.
  • Nachbar R; Québec Heart and Lung Institute, Department of Medicine, Laval University, Québec, Canada.
  • St-Pierre P; Québec Heart and Lung Institute, Department of Medicine, Laval University, Québec, Canada.
  • Diaguarachchige De Silva K; Department of Kinesiology and Health Sciences, University of Waterloo, Ontario, Canada.
  • Wood GA; Ontario Veterinary College, University of Guelph, Ontario, Canada.
  • Joseph JW; School of Pharmacy, University of Waterloo, Ontario, Canada.
  • Doucette CA; Max Rady College of Medicine, University of Manitoba, Manitoba, Canada.
  • Marette A; Québec Heart and Lung Institute, Department of Medicine, Laval University, Québec, Canada.
  • Stark KD; Department of Kinesiology and Health Sciences, University of Waterloo, Ontario, Canada.
  • Duncan RE; Department of Kinesiology and Health Sciences, University of Waterloo, Ontario, Canada. Electronic address: reduncan@uwaterloo.ca.
Mol Metab ; 81: 101887, 2024 Mar.
Article em En | MEDLINE | ID: mdl-38280449
ABSTRACT

OBJECTIVE:

Lipotoxic injury from renal lipid accumulation in obesity and type 2 diabetes (T2D) is implicated in associated kidney damage. However, models examining effects of renal ectopic lipid accumulation independent of obesity or T2D are lacking. We generated renal tubule-specific adipose triglyceride lipase knockout (RT-SAKO) mice to determine if this targeted triacylglycerol (TAG) over-storage affects glycemic control and kidney health.

METHODS:

Male and female RT-SAKO mice and their control littermates were tested for changes in glycemic control at 10-12 and 16-18 weeks of age. Markers of kidney health and blood lipid and hormone concentrations were analyzed. Kidney and blood lysophosphatidic acid (LPA) levels were measured, and a role for LPA in mediating impaired glycemic control was evaluated using the LPA receptor 1/3 inhibitor Ki-16425.

RESULTS:

All groups remained insulin sensitive, but 16- to 18-week-old male RT-SAKO mice became glucose intolerant, without developing kidney inflammation or fibrosis. Rather, these mice displayed lower circulating insulin and glucagon-like peptide 1 (GLP-1) levels. Impaired first-phase glucose-stimulated insulin secretion was detected and restored by Exendin-4. Kidney and blood LPA levels were elevated in older male but not female RT-SAKO mice, associated with increased kidney diacylglycerol kinase epsilon. Inhibition of LPA-mediated signaling restored serum GLP-1 levels, first-phase insulin secretion, and glucose tolerance.

CONCLUSIONS:

TAG over-storage alone is insufficient to cause renal tubule lipotoxicity. This work is the first to show that endogenously derived LPA modulates GLP-1 levels in vivo, demonstrating a new mechanism of kidney-gut-pancreas crosstalk to regulate insulin secretion and glucose homeostasis.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Diabetes Mellitus Tipo 2 / Peptídeo 1 Semelhante ao Glucagon Limite: Animals Idioma: En Revista: Mol Metab Ano de publicação: 2024 Tipo de documento: Article País de afiliação: Canadá

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Diabetes Mellitus Tipo 2 / Peptídeo 1 Semelhante ao Glucagon Limite: Animals Idioma: En Revista: Mol Metab Ano de publicação: 2024 Tipo de documento: Article País de afiliação: Canadá