🧬 BDNF Extraction Viewer

Извлечено: 997 / 997 (100.0%) Средняя confidence: 0.13
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Serpina1e mediates the exercise-induced enhancement of hippocampal memory in male mice.

PMID: 41957371 · DOI: 10.1038/s41467-026-71420-0 · Nature communications, 2026 · Hyunyoung Kim, Sanghee Shin, Jeongho Han, Kangseok Yun, Jong-Seo Kim, Hyungju Park
📄 Abstract

Exercise enhances learning and memory, not only through improved cardiometabolic but also through body-brain interactions mediated by secreted factors. Given the prominent role of skeletal muscle during exercise, muscle-derived factors, myokines, are believed to mediate the exercise-induced cognitive enhancements. Here, we demonstrate that intramuscular Serpina1e is upregulated following exercise in male mice. Systemic delivery of recombinant Serpina1e or intramuscular overexpression of Serpina1e reproduces exercise-induced memory enhancements in sedentary male mice. Conversely, muscle-specific depletion of Serpina1e abolishes hippocampal memory enhancement, indicating a requirement of muscle-derived Serpina1e for these cognitive benefits. Mechanistically, elevated plasma Serpina1e stimulates neurogenesis, brain-derived neurotrophic factor (BDNF) expression, and neurite growth in the hippocampus by crossing the blood-cerebrospinal fluid (CSF) and blood-brain barrier. Our findings identify Serpina1e as a key mediator of skeletal muscle-brain interaction that enables the beneficial effects of exercise on cognitive function.

Confidence: 0.32 · 12 полей извлечено
Идентификация (6 полей)
Target
Serpina1e
1.00
Alt. target
—
0.00
Protein family
Serpin
0.90
Functional class
Serine protease inhibitor
0.90
Subcellular loc.
Secreted
0.90
Isoforms (metab/obesity)
—
0.00
Механизм действия (21 полей)
Mechanism
Serpina1e stimulates neurogenesis, BDNF expression, and neurite growth in the hippocampus by crossing the blood-CSF and blood-brain barrier.
0.95
Mutations (obesity/lean)
—
0.00
Activity (obesity)
—
0.00
Activity temporal
—
0.00
Energy balance
—
0.00
Appetite
—
0.00
Fat metabolism
—
0.00
Lipolysis
—
0.00
Thermogenesis
—
0.00
Muscle metabolism
—
0.00
Inflammation
—
0.00
Glucose metabolism
—
0.00
AA metabolism
—
0.00
Hormonal pathways
—
0.00
Cell death
—
0.00
Adipocyte fibrosis
—
0.00
Upstream (biochem)
—
0.00
Upstream (physiol)
Exercise upregulates intramuscular Serpina1e.
0.90
Downstream (biochem)
Neurogenesis, BDNF expression, neurite growth.
0.90
Downstream (physiol)
Enhanced hippocampal memory.
0.90
PTMs
—
0.00
Экспрессия (8 полей)
Tissue expression
Serpina1e is upregulated in skeletal muscle following exercise in male mice.
0.95
In vitro
—
0.00
In vivo
Systemic delivery of recombinant Serpina1e or intramuscular overexpression of Serpina1e reproduces exercise-induced memory enhancements in sedentary male mice. Muscle-specific depletion of Serpina1e abolishes hippocampal memory enhancement.
0.95
In silico
—
0.00
Genetic association
—
0.00
Ex vivo
—
0.00
Animal model
male mice
0.95
Diet/model
exercise model
0.90
Клиника (11 полей)