Volltext-Downloads (blau) und Frontdoor-Views (grau)

Protective Effects of Gαi3 Deficiency in a Murine Heart-Failure Model of β1-Adrenoceptor Overexpression

  • We have shown that in murine cardiomyopathy caused by overexpression of the β1-adrenoceptor, Gαi2-deficiency is detrimental. Given the growing evidence for isoform-specific Gαi-functions, we now examined the consequences of Gαi3 deficiency in the same heart-failure model. Mice overexpressing cardiac β1-adrenoceptors with (β1-tg) or without Gαi3-expression (β1-tg/Gαi3−/−) were compared to C57BL/6 wildtypes and global Gαi3-knockouts (Gαi3−/−). The life span of β1-tg mice was significantly shortened but improved when Gαi3 was lacking (95% CI: 592–655 vs. 644–747 days). At 300 days of age, left-ventricular function and survival rate were similar in all groups. At 550 days of age, β1-tg but not β1-tg/Gαi3−/− mice displayed impaired ejection fraction (35 ± 18% vs. 52 ± 16%) compared to wildtype (59 ± 4%) and Gαi3−/− mice (60 ± 5%). Diastolic dysfunction of β1-tg mice was prevented by Gαi3 deficiency, too. The increase of ANP mRNA levels and ventricular fibrosis observed in β1-tg hearts was significantly attenuated in β1-tg/Gαi3−/− mice. Transcript levels of phospholamban, ryanodine receptor 2, and cardiac troponin I were similar in all groups. However, Western blots and phospho-proteomic analyses showed that in β1-tg, but not β1-tg/Gαi3−/− ventricles, phospholamban protein was reduced while its phosphorylation increased. Here, we show that in mice overexpressing the cardiac β1-adrenoceptor, Gαi3 deficiency slows or even prevents cardiomyopathy and increases shortened life span. Previously, we found Gαi2 deficiency to aggravate cardiac dysfunction and mortality in the same heart-failure model. Our findings indicate isoform-specific interventions into Gi-dependent signaling to be promising cardio-protective strategies.
Metadaten
Author:Tobias Schröper, Dennis Mehrkens, Veronika Leiss, Frederik Tellkamp, Stefan Engelhardt, Stefan Herzig, Lutz Birnbaumer, Bernd Nürnberg, Jan Matthes
URN:urn:nbn:de:hbz:832-epub4-27960
DOI:https://doi.org/10.1007/s00210-023-02751-8
ISSN:0028-1298
ISSN:1432-1912
Parent Title (English):Naunyn-Schmiedeberg's Archives of Pharmacology
Publisher:Springer Berlin Heidelberg
Document Type:Article
Language:English
Date of Publication (online):2025/04/09
Tag:Adrenergic Receptor; Cardiomyopathy; Cardioprotection; Heart Failure
Volume:397
Issue:4
Page Number:20
Institutes:Angewandte Naturwissenschaften (F11)
Dewey Decimal Classification:500 Naturwissenschaften und Mathematik
Open Access:Open Access
DeepGreen:DeepGreen
Licence (German):License LogoCreative Commons - CC BY - Namensnennung 4.0 International