Ishido Minenori, Nakamura Tomohiro
Section for Health-related Physical Education, Division of Human Sciences, Faculty of Engineering, Osaka Institute of Technology, Ohmiya, Asahi-ku, Osaka, 535-8585, Japan.
J Muscle Res Cell Motil. 2017 Apr;38(2):175-181. doi: 10.1007/s10974-017-9471-y. Epub 2017 May 9.
Aquaporin-4 (AQP4) is a selective water channel mediating water transport across cell membranes in skeletal muscles. Recently, it was noted that AQP4 is one of the key molecules regulating muscle morphology. Indeed, the AQP4 accumulation level was stably maintained in hypertrophied skeletal muscles. On the other hand, whether the AQP4 accumulation level is stably maintained in atrophied muscles remains poorly understood. The present study investigated the changes in the AQP4 accumulation level in the atrophied muscles at 2 weeks after denervation. As a result, the accumulation level of AQP4 in the atrophied muscle was significantly decreased compared with that in the control muscle (p < 0.05). Interestingly, the accumulation level of α1-syntrophin, which is an essential factor in regulating the stable accumulation level of AQP4, was stably maintained in the atrophied muscles. On the other hand, the accumulation level of the transient receptor potential vanilloid 4 (TRPV4), which contributes to cell volume control via interaction with AQP4, was significantly increased in the atrophied muscles compared with that in the control muscle (p < 0.05). Therefore, the present study suggested that the imbalance between the AQP4 accumulation level and skeletal muscle volume may be induced in the atrophied muscles by denervation, and the decrease in the accumulation level of AQP4 may be accompanied by defects in the functional and structural relationships with α1-syntrophin and TRPV4.
水通道蛋白4(AQP4)是一种选择性水通道,介导水在骨骼肌细胞膜上的转运。最近,人们注意到AQP4是调节肌肉形态的关键分子之一。事实上,AQP4在肥大的骨骼肌中积累水平稳定维持。另一方面,AQP4在萎缩肌肉中的积累水平是否稳定维持仍知之甚少。本研究调查了去神经支配后2周萎缩肌肉中AQP4积累水平的变化。结果,与对照肌肉相比,萎缩肌肉中AQP4的积累水平显著降低(p < 0.05)。有趣的是,α1-肌营养不良蛋白聚糖,这是调节AQP4稳定积累水平的一个重要因素,其在萎缩肌肉中的积累水平稳定维持。另一方面,瞬时受体电位香草酸受体4(TRPV4),其通过与AQP4相互作用参与细胞体积控制,与对照肌肉相比,在萎缩肌肉中的积累水平显著增加(p < 0.05)。因此,本研究表明,去神经支配可能导致萎缩肌肉中AQP4积累水平与骨骼肌体积之间失衡,并且AQP4积累水平的降低可能伴随着与α1-肌营养不良蛋白聚糖和TRPV4功能及结构关系的缺陷。