PCSK9 deficiency rewires heart metabolism and drives heart failure with preserved ejection fraction

Author:

Da Dalt Lorenzo1ORCID,Castiglioni Laura2,Baragetti Andrea13ORCID,Audano Matteo1ORCID,Svecla Monika1ORCID,Bonacina Fabrizia1ORCID,Pedretti Silvia1ORCID,Uboldi Patrizia1,Benzoni Patrizia4ORCID,Giannetti Federica4ORCID,Barbuti Andrea4ORCID,Pellegatta Fabio5ORCID,Indino Serena6ORCID,Donetti Elena6ORCID,Sironi Luigi2ORCID,Mitro Nico1ORCID,Catapano Alberico Luigi13ORCID,Norata Giuseppe Danilo15ORCID

Affiliation:

1. Department of Pharmacological and Biomolecular Sciences, Università degli Studi di Milano, Via balzaretti, 9, 20133 Milan, Italy

2. Department of Pharmaceutical Sciences, Università degli Studi di Milano, Via Mangiagalli, 25, 20133 Milan, Italy

3. IRCCS Multimedica Hospital, Via Milanese, 300, 20099 Sesto San Giovanni, Italy

4. Department of Biosciences, Università degli Studi di Milano, Via Celoria, 26, 20133 Milan, Italy

5. Centro SISA per lo studio dell’Aterosclerosi, Ospedale Bassini, Via Massimo Gorki, 50, 20092 Cinisello Balsamo, Italy

6. Department of Biomedical Science for Health, Università degli Studi di Milano, Via Mangiagalli, 31, 20133 Milan, Italy

Abstract

Abstract Aims PCSK9 is secreted into the circulation, mainly by the liver, and interacts with low-density lipoprotein receptor (LDLR) homologous and non-homologous receptors, including CD36, thus favouring their intracellular degradation. As PCSK9 deficiency increases the expression of lipids and lipoprotein receptors, thus contributing to cellular lipid accumulation, we investigated whether this could affect heart metabolism and function. Methods and results Wild-type (WT), Pcsk9 KO, Liver conditional Pcsk9 KO and Pcsk9/Ldlr double KO male mice were fed for 20 weeks with a standard fat diet and then exercise resistance, muscle strength, and heart characteristics were evaluated. Pcsk9 KO presented reduced running resistance coupled to echocardiographic abnormalities suggestive of heart failure with preserved ejection fraction (HFpEF). Heart mitochondrial activity, following maximal coupled and uncoupled respiration, was reduced in Pcsk9 KO mice compared to WT mice and was coupled to major changes in cardiac metabolism together with increased expression of LDLR and CD36 and with lipid accumulation. A similar phenotype was observed in Pcsk9/Ldlr DKO, thus excluding a contribution for LDLR to cardiac impairment observed in Pcsk9 KO mice. Heart function profiling of the liver selective Pcsk9 KO model further excluded the involvement of circulating PCSK9 in the development of HFpEF, pointing to a possible role locally produced PCSK9. Concordantly, carriers of the R46L loss-of-function variant for PCSK9 presented increased left ventricular mass but similar ejection fraction compared to matched control subjects. Conclusion PCSK9 deficiency impacts cardiac lipid metabolism in an LDLR independent manner and contributes to the development of HFpEF.

Funder

Fondazione Cariplo

Telethon Foundation

PCSK9 Competitive Grant Program

European Foundation

Lilly European Diabetes Research Programme

Accademia di Medicina di Torino

Peanut Institute Foundation “Research Award

Post-Doctoral Fellowship 2020

Fondazione Umberto Veronesi

Department of excellence of Pharmacological and Biomolecular Sciences

Publisher

Oxford University Press (OUP)

Subject

Cardiology and Cardiovascular Medicine

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