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Publication : Hypothalamic Menin regulates systemic aging and cognitive decline.

First Author  Leng L Year  2023
Journal  PLoS Biol Volume  21
Issue  3 Pages  e3002033
PubMed ID  36928253 Mgi Jnum  J:339170
Mgi Id  MGI:7445917 Doi  10.1371/journal.pbio.3002033
Citation  Leng L, et al. (2023) Hypothalamic Menin regulates systemic aging and cognitive decline. PLoS Biol 21(3):e3002033
abstractText  Aging is a systemic process, which is a risk factor for impaired physiological functions, and finally death. The molecular mechanisms driving aging process and the associated cognitive decline are not fully understood. The hypothalamus acts as the arbiter that orchestrates systemic aging through neuroinflammatory signaling. Our recent findings revealed that Menin plays important roles in neuroinflammation and brain development. Here, we found that the hypothalamic Menin signaling diminished in aged mice, which correlates with systemic aging and cognitive deficits. Restoring Menin expression in ventromedial nucleus of hypothalamus (VMH) of aged mice extended lifespan, improved learning and memory, and ameliorated aging biomarkers, while inhibiting Menin in VMH of middle-aged mice induced premature aging and accelerated cognitive decline. We further found that Menin epigenetically regulates neuroinflammatory and metabolic pathways, including D-serine metabolism. Aging-associated Menin reduction led to impaired D-serine release by VMH-hippocampus neural circuit, while D-serine supplement rescued cognitive decline in aged mice. Collectively, VMH Menin serves as a key regulator of systemic aging and aging-related cognitive decline.
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