Key Laboratory of Resource Biology and Biotechnology in Western China, College of Life Sciences, Northwest University, Ministry of Education, Xi'an, China.
Laboratory for Bone Metabolism, Key Laboratory for Space Bioscience and Biotechnology, School of Life Sciences, Northwestern Polytechnical University, Xi'an, Shaanxi, People's Republic of China.
J Cell Physiol. 2019 Aug;234(8):13318-13331. doi: 10.1002/jcp.28008. Epub 2019 Jan 11.
We examined ultrastructure protective phenomena and mechanisms of slow and fast muscles in hibernating Daurian ground squirrels (Spermophilus dauricus). Some degenerative changes such as slightly decreased sarcomere length and vacuolization occurred in hibernation, but periaxonal capsular borders in intrafusal fibers remained distinct and the arrangement of extrafusal fibers and Z-lines unscathed. In soleus samples, the number of glycogenosomes more than tripled during hibernation. The expression of phosphorylated glycogen synthase remained unaltered while that of glycogen phosphorylase decreased during hibernation. The number of extensor digitorum longus glycogenosomes decreased and the expression of phosphorylated glycogen synthase decreased, while glycogen phosphorylase expression remained unaltered. The nuclei number remained unchanged. Kinesin and desmin, preventors of nuclear loss and damage, were maintained or just slightly reduced in hibernation. The single-fiber mitochondrial concentration and sub-sarcolemmal mitochondrial number increased in both muscle types. The expression of vimentin, which anchors mitochondria and maintains Z-line integrity, was increased during and after hibernation. Also, dynamin-related protein 1, mitochondrial fission factor, and adenosine triphosphate synthase were elevated in both muscle types. These findings confirm a remarkable ultrastructure preservation and show an unexpected increase in mitochondrial capacity in hibernating squirrels.
我们研究了冬眠达乌尔黄鼠(Spermophilus dauricus)慢肌和快肌的超微结构保护现象和机制。在冬眠过程中,肌节长度略有减小和出现空泡化等退行性变化,但梭内纤维的轴周帽边界仍然清晰,梭外纤维和 Z 线的排列完好无损。在比目鱼肌样本中,糖元体的数量在冬眠期间增加了两倍多。磷酸化糖原合酶的表达在冬眠期间保持不变,而糖原磷酸化酶的表达则减少。伸趾长肌糖元体的数量减少,磷酸化糖原合酶的表达减少,而糖原磷酸化酶的表达保持不变。核的数量保持不变。驱动蛋白和结蛋白,是防止核丢失和损伤的物质,在冬眠中保持或略有减少。两种肌肉类型的肌纤维线粒体浓度和肌膜下线粒体数量都增加了。锚定线粒体并维持 Z 线完整性的波形蛋白的表达在冬眠期间和之后增加。此外,两种肌肉类型的动力相关蛋白 1、线粒体分裂因子和三磷酸腺苷合酶的表达也升高了。这些发现证实了冬眠松鼠惊人的超微结构保存,并显示了线粒体容量的意外增加。