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Heart failure-induced cognitive dysfunction is mediated by intracellular Ca2+leak through ryanodine receptor type 2

Authors :
Dridi, Haikel
Liu, Yang
Reiken, Steven
Liu, Xiaoping
Argyrousi, Elentina K.
Yuan, Qi
Miotto, Marco C.
Sittenfeld, Leah
Meddar, Andrei
Soni, Rajesh Kumar
Arancio, Ottavio
Lacampagne, Alain
Marks, Andrew R.
Source :
Nature Neuroscience; August 2023, Vol. 26 Issue: 8 p1365-1378, 14p
Publication Year :
2023

Abstract

Cognitive dysfunction (CD) in heart failure (HF) adversely affects treatment compliance and quality of life. Although ryanodine receptor type 2 (RyR2) has been linked to cardiac muscle dysfunction, its role in CD in HF remains unclear. Here, we show in hippocampal neurons from individuals and mice with HF that the RyR2/intracellular Ca2+release channels were subjected to post-translational modification (PTM) and were leaky. RyR2 PTM included protein kinase A phosphorylation, oxidation, nitrosylation and depletion of the stabilizing subunit calstabin2. RyR2 PTM was caused by hyper-adrenergic signaling and activation of the transforming growth factor-beta pathway. HF mice treated with a RyR2 stabilizer drug (S107), beta blocker (propranolol) or transforming growth factor-beta inhibitor (SD-208), or genetically engineered mice resistant to RyR2 Ca2+leak (RyR2-p.Ser2808Ala), were protected against HF-induced CD. Taken together, we propose that HF is a systemic illness driven by intracellular Ca2+leak that includes cardiogenic dementia.

Details

Language :
English
ISSN :
10976256 and 15461726
Volume :
26
Issue :
8
Database :
Supplemental Index
Journal :
Nature Neuroscience
Publication Type :
Periodical
Accession number :
ejs63507932
Full Text :
https://doi.org/10.1038/s41593-023-01377-6