Mitochondrial P2X7 Receptor Localization Modulates Energy Metabolism Enhancing Physical Performance

Author:

Sarti Alba Clara1,Vultaggio-Poma Valentina1,Falzoni Simonetta1,Missiroli Sonia1,Giuliani Anna Lisa1,Boldrini Paola2,Bonora Massimo1,Faita Francesco3,Di Lascio Nicole3,Kusmic Claudia3,Solini Anna4,Novello Salvatore5,Morari Michele5,Rossato Marco6,Wieckowski Mariusz R7,Giorgi Carlotta1,Pinton Paolo1,Di Virgilio Francesco1

Affiliation:

1. Department of Medical Sciences, University of Ferrara, Ferrara 44121, Italy

2. Center of Electronic Microscopy, University of Ferrara, Ferrara 44121, Italy

3. Institute of Clinical Physiology, National Research Council, Pisa 56124, Italy

4. Department of Surgical, Medical, Molecular, and Critical Area Pathology, University of Pisa, Pisa 56124, Italy

5. Department of Biomedical and Specialty Surgical Sciences, University of Ferrara, Ferrara 44121, Italy

6. Department of Medicine, University of Padova, Padova 35128, Italy

7. Nencki Institute of Experimental Biology, PAS, Warsaw 02093, Poland

Abstract

Abstract Basal expression of the P2X7 receptor (P2X7R) improves mitochondrial metabolism, Adenosine 5′-triphosphate (ATP) synthesis, and overall fitness of immune and non-immune cells. We investigated P2X7R contribution to energy metabolism and subcellular localization in fibroblasts (mouse embryo fibroblasts and HEK293 human fibroblasts), mouse microglia (primary brain microglia, and the N13 microglia cell line), and heart tissue. The P2X7R localizes to mitochondria, and its lack (1) decreases basal respiratory rate, ATP-coupled respiration, maximal uncoupled respiration, resting mitochondrial potential, mitochondrial matrix Ca2+ level, (2) modifies expression pattern of oxidative phosphorylation enzymes, and (3) severely affects cardiac performance. Hearts from P2rx7-deleted versus wild-type mice are larger, heart mitochondria smaller, and stroke volume, ejection fraction, fractional shortening, and cardiac output, are significantly decreased. Accordingly, the physical fitness of P2X7R-null mice is severely reduced. Thus, the P2X7R is a key modulator of mitochondrial energy metabolism and a determinant of physical fitness.

Funder

Italian Association for Cancer Research

Ministry of University and Research of Italy

University of Ferrara

Ministry of University and Research of Italy, PRIN 2017

E5L5P3

AIRC

Italian Ministry of Health

Fondazione Cariplo

European Research Council, ERC

Publisher

Oxford University Press (OUP)

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