Fujian Provincial Key Laboratory of Neurodegenerative Disease and Aging Research, Institute of Neuroscience, College of Medicine, Xiamen University, Xiamen, Fujian, China.
College of Basic Medicine, Hebei Medical University, Shijiazhuang, Hebei, China.
PLoS Biol. 2023 Mar 16;21(3):e3002033. doi: 10.1371/journal.pbio.3002033. eCollection 2023 Mar.
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.
衰老是一个系统性的过程,是导致生理功能受损,最终导致死亡的一个风险因素。导致衰老过程和相关认知能力下降的分子机制尚未完全阐明。下丘脑作为协调系统衰老的仲裁者,通过神经炎症信号发挥作用。我们最近的研究结果表明,Menin 在神经炎症和大脑发育中发挥着重要作用。在这里,我们发现年老小鼠的下丘脑 Menin 信号减弱,这与全身衰老和认知缺陷有关。在年老小鼠的下丘脑腹内侧核(VMH)中恢复 Menin 的表达,延长了寿命,改善了学习和记忆,并改善了衰老生物标志物,而在中年小鼠的 VMH 中抑制 Menin 则导致过早衰老和认知能力下降加速。我们进一步发现,Menin 表观遗传调控神经炎症和代谢途径,包括 D-丝氨酸代谢。与衰老相关的 Menin 减少导致 VMH-海马神经回路中 D-丝氨酸释放受损,而 D-丝氨酸补充则挽救了年老小鼠的认知能力下降。总的来说,VMH Menin 是全身衰老和衰老相关认知能力下降的关键调节因子。