Physical exercise improves motor control and related cognitive abilities and reinforces neuroprotective mechanisms in the nervous system. As peripheral nerves interact with skeletal muscles at the neuromuscular junction, modifications of this bidirectional communication by physical activity are positive to preserve this synapse as it increases quantal content and resistance to fatigue, acetylcholine receptors expansion, and myocytes' fast-to-slow functional transition. Here, we provide the intermediate step between physical activity and functional and morphological changes by analyzing the molecular adaptations in the skeletal muscle of the full BDNF/TrkB downstream signaling pathway, directly involved in acetylcholine release and synapse maintenance. After 45 days of training at different intensities, the BDNF/TrkB molecular phenotype of trained muscles from male B6SJLF1/J mice undergo a fast-to-slow transition without affecting motor neuron size. We provide further knowledge to understand how exercise induces muscle molecular adaptations towards a slower phenotype, resistant to prolonged trains of stimulation or activity that can be useful as therapeutic tools.
Running and Swimming Differently Adapt the BDNF/TrkB Pathway to a Slow Molecular Pattern at the NMJ.
跑步和游泳以不同的方式使 BDNF/TrkB 通路适应 NMJ 处的慢分子模式
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作者:Just-Borrà s Laia, Cilleros-Mañé VÃctor, Hurtado Erica, Biondi Olivier, Charbonnier Frédéric, Tomà s Marta, Garcia Neus, Tomà s Josep, Lanuza Maria A
| 期刊: | International Journal of Molecular Sciences | 影响因子: | 4.900 |
| 时间: | 2021 | 起止号: | 2021 Apr 27; 22(9):4577 |
| doi: | 10.3390/ijms22094577 | 研究方向: | 信号转导 |
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