Fasting influences aquaporin expression, water transport and adipocyte metabolism in the peritoneal membrane

Author:

Costa Ines P D1,Hautem Nicolas1,Schiano Gugliemo2ORCID,Uchida Shinichi3,Nishino Tomoya14,Devuyst Olivier125ORCID

Affiliation:

1. Division of Nephrology, IREC, UCLouvain , Brussels, Belgium

2. Mechanisms of Inherited Kidney Disorders Group, Institute of Physiology, University of Zurich , Zurich, Switzerland

3. Department of Nephrology, Tokyo Medical and Dental University , Tokyo, Japan

4. Department of Nephrology, Nagasaki University Hospital , Nagasaki, Japan

5. Division of Nephrology, Cliniques Universitaires Saint-Luc , Brussels, Belgium

Abstract

ABSTRACT Background The water channels aquaporin-1 (AQP1) and AQP7 are abundantly expressed in the peritoneal membrane. While AQP1 facilitates water transport during peritoneal dialysis (PD), the role of AQP7, which mediates glycerol transport during fasting, remains unknown. Methods We investigated the distribution of AQP7 and AQP1 and used a mouse model of PD to investigate the role of AQP7 in the peritoneal membrane at baseline and after fasting. Results Single nucleus RNA-sequencing revealed that AQP7 was mostly detected in mature adipocytes, whereas AQP1 was essentially expressed in endothelial cells. Fasting induced significant decreases in whole body fat, plasma glucose, insulin and triglycerides, as well as higher plasma glycerol and corticosterone levels in mice, paralleled by major decreases in adipocyte size and levels of fatty acid synthase and leptin, and increased levels of hormone-sensitive lipase mRNAs in the peritoneum. Mechanistically, fasting upregulated the expression of AQP1 and AQP7 in the peritoneum, with increased ultrafiltration but no change in small solute transport. Studies based on Aqp1 and Aqp7 knockout mice and RU-486 inhibition demonstrated that the glucocorticoid induction of AQP1 mediates the increase in ultrafiltration whereas AQP7 regulates the size of adipocytes in the peritoneum. Conclusions Fasting induces a coordinated regulation of lipolytic and lipogenic factors and aqua(glycero)porins in the peritoneum, driving structural and functional changes. These data yield novel information on the specific roles of aquaporins in the peritoneal membrane and indicate that fasting improves fluid removal in a mouse model of PD.

Funder

Horizon 2020

Marie Skłodowska-Curie Actions

Publisher

Oxford University Press (OUP)

Subject

Transplantation,Nephrology

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