Humanin variant P3S is associated with longevity in APOE4 carriers and resists APOE4‐induced brain pathology

Author:

Miller Brendan1ORCID,Kim Su‐Jeong1,Cao Kevin1,Mehta Hemal H.1,Thumaty Neehar1,Kumagai Hiroshi1,Iida Tomomitsu1,McGill Cassandra1,Pike Christian J.1,Nurmakova Kamila2,Levine Zachary A.23,Sullivan Patrick M.4,Yen Kelvin1,Ertekin‐Taner Nilüfer5ORCID,Atzmon Gil67,Barzilai Nir6,Cohen Pinchas1

Affiliation:

1. Leonard Davis School of Gerontology University of Southern California Los Angeles California USA

2. Department of Molecular Biophysics and Biochemistry Yale University New Haven Connecticut USA

3. Department of Pathology Yale School of Medicine New Haven Connecticut USA

4. Department of Medicine (Geriatrics) Duke University Medical Center Durham North Carolina USA

5. Department of Neuroscience Mayo Clinic Jacksonville Florida USA

6. Department of Medicine Albert Einstein College of Medicine Bronx New York USA

7. Department of Biology, Faculty of Natural Sciences University of Haifa Haifa Israel

Abstract

AbstractThe APOE4 allele is recognized as a significant genetic risk factor to Alzheimer's disease (AD) and influences longevity. Nonetheless, some APOE4 carriers exhibit resistance to AD even in advanced age. Humanin, a mitochondrial‐derived peptide comprising 24 amino acids, has variants linked to cognitive resilience and longevity. Our research uncovered a unique humanin variant, P3S, specifically enriched in centenarians with the APOE4 allele. Through in silico analyses and subsequent experimental validation, we demonstrated a strong affinity between humanin P3S and APOE4. Utilizing an APOE4‐centric mouse model of amyloidosis (APP/PS1/APOE4), we observed that humanin P3S significantly attenuated brain amyloid‐beta accumulation compared to the wild‐type humanin. Transcriptomic assessments of mice treated with humanin P3S highlighted its potential mechanism involving the enhancement of amyloid beta phagocytosis. Additionally, in vitro studies corroborated humanin P3S's efficacy in promoting amyloid‐beta clearance. Notably, in the temporal cortex of APOE4 carriers, humanin expression is correlated with genes associated with phagocytosis. Our findings suggest a role of the rare humanin variant P3S, especially prevalent among individuals of Ashkenazi descent, in mitigating amyloid beta pathology and facilitating phagocytosis in APOE4‐linked amyloidosis, underscoring its significance in longevity and cognitive health among APOE4 carriers.

Funder

National Institutes of Health

Publisher

Wiley

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