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Pathological aging is alleviated by neutralization of the autophagy-repressive tissue hormone DBI/ACBP
Léa Montégut1,2, Flavia Lambertucci1,2, Lucas Moledo-Nodar3
1Team "Metabolism, Cancer & Immunity", Centre de Recherche des Cordeliers, Equipe Labellisée par la Ligue Contre le Cancer, Université Paris Cité, Sorbonne Université, Inserm U1138, Institut Universitaire de France, Paris, France.
Abstract:
DBI/ACBP (diazepam binding inhibitor, acyl CoA-binding protein) is a macroautophagy/autophagy-inhibitory tissue hormone produced by multiple cell types. The plasma levels of DBI/ACBP rise with age and disease. In centenarians living in nursing homes, DBI/ACBP concentrations are approximately threefold higher than in younger adults (30-48 years old), but these levels increase further in centenarians hospitalized due to disease exacerbation. Elevated DBI/ACBP correlates with unfavorable clinical parameters, including high Charlson Comorbidity Index, elevated neutrophil:lymphocyte ratio, and decreased renal function. In mouse models, neutralization of DBI/ACBP using monoclonal antibodies ameliorates several aging-related pathologies. In zmpste24-/- progeroid mice, anti-DBI/ACBP therapy improves posture, mobility, cutaneous and dental abnormalities, splenic atrophy, kidney function, and blood parameters. In models of renal aging induced by cisplatin or doxorubicin, DBI/ACBP neutralization suppresses renal fibrosis and cellular senescence. Similarly, in cardiac and hepatic aging models, anti-DBI/ACBP reduces expression of the senescence marker CDKN1A/p21 (cyclin dependent kinase inhibitor 1A) in cardiomyocytes and hepatocytes. Single-nucleus RNA sequencing of heart tissue revealed that anti-DBI/ACBP restores key metabolic and cardioprotective gene expression patterns suppressed by doxorubicin. Together, these findings establish DBI/ACBP as a marker and driver of pathological aging and demonstrate that its neutralization confers multi-organ anti-senescence effects. Thus, DBI/ACBP-targeting strategies hold therapeutic potential for improving healthspan.
Insights
Diazepam binding inhibitor (DBI/ACBP) is a hormone that increases with age and disease. Neutralizing DBI/ACBP shows therapeutic potential by reducing aging pathologies and promoting healthspan.
Area of Science:
- Biochemistry
- Gerontology
- Molecular Biology
Background:
- Diazepam binding inhibitor/acyl CoA-binding protein (DBI/ACBP) is a tissue hormone that inhibits autophagy.
- Plasma levels of DBI/ACBP increase with age and disease severity, correlating with poor clinical outcomes.
- Elevated DBI/ACBP is linked to comorbidities, inflammation, and reduced kidney function.
Purpose of the Study:
- To investigate the role of DBI/ACBP in aging and age-related diseases.
- To evaluate the therapeutic potential of neutralizing DBI/ACBP in preclinical models.
Main Methods:
- Analysis of DBI/ACBP plasma levels in centenarians and correlation with clinical parameters.
- Administration of anti-DBI/ACBP monoclonal antibodies in mouse models of aging and disease.
- Assessment of various physiological and molecular parameters, including renal function, cellular senescence markers (CDKN1A/p21), and gene expression via single-nucleus RNA sequencing.
Main Results:
- DBI/ACBP levels are significantly higher in centenarians, especially those hospitalized, and correlate with adverse clinical factors.
- Anti-DBI/ACBP therapy improved multiple aging-related pathologies in progeroid mice, including physical function and organ health.
- DBI/ACBP neutralization suppressed renal fibrosis and cellular senescence in models of kidney aging.
- In cardiac and hepatic aging models, anti-DBI/ACBP reduced senescence markers and restored protective gene expression patterns.
Conclusions:
- DBI/ACBP acts as both a marker and a driver of pathological aging.
- Neutralization of DBI/ACBP demonstrates multi-organ anti-senescence effects.
- Targeting DBI/ACBP presents a promising therapeutic strategy for enhancing healthspan.
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