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Nipsnap 1 deficiency shifts neuronal and synaptic signaling toward inflammatory pathway and impairs cognitive functions in the aging brain

nature.com 06.10.2026 02:00 6 views

Mitochondrial quality control is essential for maintaining neuronal function during aging. Nipsnap1 (Nip1), a mitochondrial protein involved in mitophagy, metabolic regulation, and cellular senescence, has emerged as a potential regulator of tissue homeostasis; however, its role in brain aging remains unclear. Here, we investigated the consequences of constitutive Nip1 deficiency using transcriptomic, histological, biochemical, behavioral, and metabolomic approaches in aged mice.

Bulk RNA sequencing of cortical and hippocampal tissues from 15-month-old Nip1 knockdown (Nip1KD) mice revealed widespread transcriptional alterations, including downregulation of neuronal and synaptic pathways and upregulation of neuroinflammatory and innate immune programs. Disease-associated microglial genes, including Trem2, Apoe, and C1q family members, were significantly elevated. Histological analyses demonstrated reduced neuronal density, increased microglial activation, and enhanced apoptosis.

Functional analyses of isolated brain mitochondria showed elevated reactive oxygen species production, reduced NAD⁺/NADH ratios, and altered bioenergetic status, consistent with mitochondrial dysfunction and redox imbalance. Behavioral assessments revealed impairments in spatial working and recognition memory. Metabolomic profiling identified broad disruptions in nucleotide, lipid, amino acid, and redox metabolism.

Several pathological and behavioral phenotypes were more pronounced in females. Collectively, these findings identify Nip1 as a critical regulator of mitochondrial homeostasis, neuroimmune balance, and neuronal integrity during brain aging. This work is supported by the Alzheimer’s disease Research Program startup fund to Dr.

Sharoar from Corewell Health and an NIH grant (R21 AG047619) to Dr. Alzheimer’s Disease Research Program, Corewell Health Research Institute, Royal Oak, MI, USA Md. Golam Sharoar, Zakia Zaman & Stewart F.

Graham Department of Internal Medicine, Oakland University William Beaumont School of Medicine, Rochester, MI, USA Department of Physiological Sciences, Oklahoma State University, Stillwater, OK, USA St. Jude Children’s Research Hospital, Memphis, TN, USA Department of Obstetrics & Gynecology, Oakland University William Beaumont School of Medicine, Rochester, MI, USA Department of Pathology, Case Western Reserve University School of Medicine, Cleveland, OH, USA Department of Foundation Medicine, Oakland University William Beaumont School of Medicine, Rochester, MI, USA The authors declare no competing interests. Publisher’s note Springer Nature remains neutral with regard to jurisdictional claims in published maps and institutional affiliations.

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