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冬眠地松鼠神经肌肉接头形态和相关调节蛋白的可塑性变化。

Plasticity changes in neuromuscular junction morphology and related regulatory proteins in the hibernating ground squirrel.

机构信息

Shaanxi Key Laboratory for Animal Conservation, College of Life Sciences, Northwest University, Xi'an, People's Republic of China.

Key Laboratory of Resource Biology and Biotechnology in Western China, Ministry of Education, Northwest University, Xi'an, People's Republic of China.

出版信息

J Appl Physiol (1985). 2023 Nov 1;135(5):1082-1091. doi: 10.1152/japplphysiol.00334.2023. Epub 2023 Oct 5.

Abstract

Skeletal muscle disuse atrophy can cause degenerative changes in neuromuscular junction morphology. Although Daurian ground squirrels () are a natural anti-disuse animal model for studying muscle atrophy during hibernation, little is known about the morphological and regulatory mechanisms of their neuromuscular junctions. Here, we found that morphological indices of the soleus muscle were significantly lower during hibernation (torpor and interbout arousal) compared with pre-hibernation but recovered during post-hibernation. In the extensor digitorum longus muscle, neuromuscular junction morphology did not change significantly during hibernation. Agrin-Lrp4-MuSK is a key pathway for the formation and maintenance of the neuromuscular junction. Our results showed that low-density lipoprotein receptor-associated protein 4 (Lrp4) expression in the soleus (slow muscle) decreased by 46.2% in the interbout arousal group compared with the pre-hibernation group ( = 0.019), with recovery in the post-hibernation group. Compared with the pre-hibernation group, agrin expression in the extensor digitorum longus (fast muscle) increased by 67.0% in the interbout arousal group ( = 0.016). In conclusion, periodic up-regulation in agrin expression during interbout arousal may be involved in the maintenance of neuromuscular junction morphology in the extensor digitorum longus muscle during hibernation. The degenerative changes in neuromuscular junction morphology and the periodic decrease in Lrp4 protein expression in the soleus during hibernation, these changes recovered to the pre-hibernation levels in the post-hibernation group, exhibiting significant plasticity. This plasticity may be one of the important mechanisms for resisting disuse atrophy in hibernating animals. This study is the first to explore the neuromuscular junction morphology of slow- and fast-twitch muscles in Daurian ground squirrels during different periods of hibernation. Results showed that the neuromuscular junction maintained stable morphology in the extensor digitorum longus muscle. The degenerative changes in neuromuscular junction morphology and the periodic decrease in Lrp4 protein expression in the soleus muscle during hibernation recovered in post-hibernation, exhibiting significant plasticity.

摘要

骨骼肌废用性萎缩可导致运动终板形态发生退行性变化。达乌尔黄鼠()是研究冬眠期间肌肉萎缩的天然抗废用动物模型,但对其运动终板的形态和调节机制知之甚少。在这里,我们发现与冬眠前相比,在冬眠(蛰伏和觉醒间歇期)期间,比目鱼肌的形态学指标显著降低,但在冬眠后恢复。在伸趾长肌中,在冬眠期间,运动终板形态没有明显变化。Agrin-Lrp4-MuSK 是运动终板形成和维持的关键途径。我们的结果表明,与冬眠前相比,在觉醒间歇期,比目鱼肌(慢肌)中的低密度脂蛋白受体相关蛋白 4(Lrp4)表达降低了 46.2%(= 0.019),在冬眠后恢复。与冬眠前相比,在觉醒间歇期,伸趾长肌(快肌)中的 Agrin 表达增加了 67.0%(= 0.016)。总之,在觉醒间歇期 Agrin 表达的周期性上调可能参与了冬眠期间伸趾长肌运动终板形态的维持。在冬眠期间,比目鱼肌运动终板形态的退行性变化和 Lrp4 蛋白表达的周期性降低,这些变化在冬眠后恢复到冬眠前水平,表现出显著的可塑性。这种可塑性可能是冬眠动物抵抗废用性萎缩的重要机制之一。本研究首次探讨了达乌尔黄鼠在不同冬眠期慢肌和快肌的运动终板形态。结果表明,伸趾长肌运动终板保持稳定的形态。在冬眠期间,比目鱼肌运动终板形态的退行性变化和 Lrp4 蛋白表达的周期性降低,在冬眠后恢复,表现出显著的可塑性。

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