Muscle Aging and Regenerative Medicine, Tokyo Metropolitan Institute of Gerontology (TMIG), Tokyo, Japan.
Faculty of Rehabilitation and Care, Seijoh University, Tokai, Japan.
J Clin Invest. 2021 Jan 4;131(1). doi: 10.1172/JCI139617.
Age-related sarcopenia constitutes an important health problem associated with adverse outcomes. Sarcopenia is closely associated with fat infiltration in muscle, which is attributable to interstitial mesenchymal progenitors. Mesenchymal progenitors are nonmyogenic in nature but are required for homeostatic muscle maintenance. However, the underlying mechanism of mesenchymal progenitor-dependent muscle maintenance is not clear, nor is the precise role of mesenchymal progenitors in sarcopenia. Here, we show that mice genetically engineered to specifically deplete mesenchymal progenitors exhibited phenotypes markedly similar to sarcopenia, including muscle weakness, myofiber atrophy, alterations of fiber types, and denervation at neuromuscular junctions. Through searching for genes responsible for mesenchymal progenitor-dependent muscle maintenance, we found that Bmp3b is specifically expressed in mesenchymal progenitors, whereas its expression level is significantly decreased during aging or adipogenic differentiation. The functional importance of BMP3B in maintaining myofiber mass as well as muscle-nerve interaction was demonstrated using knockout mice and cultured cells treated with BMP3B. Furthermore, the administration of recombinant BMP3B in aged mice reversed their sarcopenic phenotypes. These results reveal previously unrecognized mechanisms by which the mesenchymal progenitors ensure muscle integrity and suggest that age-related changes in mesenchymal progenitors have a considerable impact on the development of sarcopenia.
年龄相关性肌肉减少症是与不良结局相关的重要健康问题。肌肉减少症与肌肉中的脂肪浸润密切相关,这归因于间质间充质祖细胞。间充质祖细胞本质上是非成肌的,但对于维持肌肉内稳态是必需的。然而,间充质祖细胞依赖性肌肉维持的潜在机制尚不清楚,间充质祖细胞在肌肉减少症中的确切作用也不清楚。在这里,我们展示了经过基因工程改造以特异性耗尽间充质祖细胞的小鼠表现出与肌肉减少症非常相似的表型,包括肌肉无力、肌纤维萎缩、纤维类型改变以及神经肌肉接头处的去神经支配。通过寻找负责间充质祖细胞依赖性肌肉维持的基因,我们发现 Bmp3b 特异性表达于间充质祖细胞中,而其表达水平在衰老或成脂分化过程中显著降低。使用 Bmp3b 处理的基因敲除小鼠和培养细胞证实了 BMP3B 对于维持肌纤维质量和肌肉-神经相互作用的功能重要性。此外,在老年小鼠中给予重组 BMP3B 可逆转其肌肉减少症表型。这些结果揭示了间充质祖细胞确保肌肉完整性的先前未被认识的机制,并表明间充质祖细胞的年龄相关变化对肌肉减少症的发展有相当大的影响。