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内皮细胞的Dll4-肌肉Notch2轴调节骨骼肌质量。

The endothelial Dll4-muscular Notch2 axis regulates skeletal muscle mass.

作者信息

Fujimaki Shin, Matsumoto Tomohiro, Muramatsu Masashi, Nagahisa Hiroshi, Horii Naoki, Seko Daiki, Masuda Shinya, Wang Xuerui, Asakura Yoko, Takahashi Yukie, Miyamoto Yuta, Usuki Shingo, Yasunaga Kei-Ichiro, Kamei Yasutomi, Nishinakamura Ryuichi, Minami Takashi, Fukuda Takaichi, Asakura Atsushi, Ono Yusuke

机构信息

Department of Muscle Development and Regeneration, Institute of Molecular Embryology and Genetics, Kumamoto University, Kumamoto, Japan.

Nagasaki University Graduate School of Biomedical Sciences, Nagasaki, Japan.

出版信息

Nat Metab. 2022 Feb;4(2):180-189. doi: 10.1038/s42255-022-00533-9. Epub 2022 Feb 28.

Abstract

Adult skeletal muscle is a highly plastic tissue that readily reduces or gains its mass in response to mechanical and metabolic stimulation; however, the upstream mechanisms that control muscle mass remain unclear. Notch signalling is highly conserved, and regulates many cellular events, including proliferation and differentiation of various types of tissue stem cell via cell-cell contact. Here we reveal that multinucleated myofibres express Notch2, which plays a crucial role in disuse- or diabetes-induced muscle atrophy. Mechanistically, in both atrophic conditions, the microvascular endothelium upregulates and releases the Notch ligand, Dll4, which then activates muscular Notch2 without direct cell-cell contact. Inhibition of the Dll4-Notch2 axis substantively prevents these muscle atrophy and promotes mechanical overloading-induced muscle hypertrophy in mice. Our results illuminate a tissue-specific function of the endothelium in controlling tissue plasticity and highlight the endothelial Dll4-muscular Notch2 axis as a central upstream mechanism that regulates catabolic signals from mechanical and metabolic stimulation, providing a therapeutic target for muscle-wasting diseases.

摘要

成年骨骼肌是一种高度可塑性的组织,能根据机械和代谢刺激迅速减少或增加其质量;然而,控制肌肉质量的上游机制仍不清楚。Notch信号高度保守,通过细胞间接触调节许多细胞事件,包括各类组织干细胞的增殖和分化。在此,我们揭示多核肌纤维表达Notch2,其在废用或糖尿病诱导的肌肉萎缩中起关键作用。从机制上讲,在这两种萎缩状态下,微血管内皮上调并释放Notch配体Dll4,然后在无直接细胞间接触的情况下激活肌肉中的Notch2。抑制Dll4-Notch2轴可实质性地预防这些肌肉萎缩,并促进小鼠机械过载诱导的肌肉肥大。我们的结果阐明了内皮细胞在控制组织可塑性方面的组织特异性功能,并突出了内皮Dll4-肌肉Notch2轴作为调节来自机械和代谢刺激的分解代谢信号的核心上游机制,为肌肉萎缩疾病提供了一个治疗靶点。

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