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GsMTx4阻断的PIEZO1通道促进杜氏肌营养不良症中的成肌分化并减轻肌纤维损伤。

GsMTx4-blocked PIEZO1 channel promotes myogenic differentiation and alleviates myofiber damage in Duchenne muscular dystrophy.

作者信息

Wang Wengang, Huang Mingyang, Huang Xiusheng, Ma Ke, Luo Ming, Yang Ningning

机构信息

Department of Orthopedics, The First Affiliated Hospital of Zhengzhou University, Zhengzhou, 450052, China.

Department of Orthopedics, Zhongnan Hospital of Wuhan University, Wuhan, 430071, China.

出版信息

Skelet Muscle. 2025 May 14;15(1):13. doi: 10.1186/s13395-025-00383-5.

Abstract

BACKGROUND

Duchenne muscular dystrophy (DMD) is a debilitating disease characterized by progressive muscle-wasting and a lack of effective therapy. Although the application of GsMTx4 has been shown to reduce muscle mass loss in dystrophic mice, the mechanism of action remains unclear.

METHODS

We employed single-nucleus RNA sequencing data to scrutinize the expression of mechanosensitive channels in skeletal muscle. The upregulation of PIEZO1 and its precise localization were corroborated in DMD patients, mdx mice, and activated satellite cells. To delve into the role of the GsMTx4-blocked PIEZO1 channel in the myogenic program, we conducted comprehensive in vitro and in vivo studies encompassing the proliferation of satellite cells, differentiation of myoblasts, and calcium influx into myofibers. Utilizing both a PIEZO1 channel inhibitor, GsMTx4, and a PIEZO1 channel agonist, Yoda1, we explored the PIEZO1 channel's impact on satellite cell proliferation and myogenic differentiation. Additionally, we explored the protective effect of the PIEZO1 channel on myofiber calcium influx using mdx mouse models and isolated single myofibers.

RESULTS

PIEZO1 was upregulated in the muscle of DMD patients and was predominantly expressed in satellite cells and upregulated during satellite cell proliferation. Treatment with GsMTx4 increased the cross-sectional areas of myofibers and reduced the proportion of centrally nucleated fibers in mdx mice. GsMTx4 inhibited satellite cell proliferation while promoting myogenic differentiation. During myogenic differentiation, the YAP nuclear-cytoplasmic ratio increased in cells treated with GsMTx4 and showed a significant correlation with the nuclear localization of MyoG. In myofibers, GsMTx4 significantly reduced the level of p-CaMKII/CaMKII in muscle and calcium load.

CONCLUSIONS

PIEZO1 upregulation in DMD could potentially stem from an elevated proportion of proliferating satellite cells triggered by sarcolemma damage and muscle necrosis. The inhibition of the PIEZO1 channel by GsMTx4 plays a beneficial role in fostering myogenic differentiation and mitigating myofiber damage. The PIEZO1 channel emerges as a promising therapeutic target for addressing DMD.

摘要

背景

杜兴氏肌营养不良症(DMD)是一种使人衰弱的疾病,其特征为进行性肌肉萎缩且缺乏有效治疗方法。尽管已证明应用GsMTx4可减少营养不良小鼠的肌肉质量损失,但其作用机制仍不清楚。

方法

我们利用单核RNA测序数据来仔细研究骨骼肌中机械敏感通道的表达。在DMD患者、mdx小鼠和活化的卫星细胞中证实了PIEZO1的上调及其精确定位。为了深入探究GsMTx4阻断的PIEZO1通道在成肌程序中的作用,我们进行了全面的体外和体内研究,包括卫星细胞的增殖、成肌细胞的分化以及钙流入肌纤维。利用PIEZO1通道抑制剂GsMTx4和PIEZO1通道激动剂Yoda1,我们探究了PIEZO1通道对卫星细胞增殖和成肌分化的影响。此外,我们使用mdx小鼠模型和分离的单个肌纤维探究了PIEZO1通道对肌纤维钙流入的保护作用。

结果

PIEZO1在DMD患者的肌肉中上调,主要在卫星细胞中表达,并在卫星细胞增殖期间上调。用GsMTx4治疗可增加mdx小鼠肌纤维的横截面积并降低中央核纤维的比例。GsMTx4抑制卫星细胞增殖,同时促进成肌分化。在成肌分化过程中,用GsMTx4处理的细胞中YAP核质比增加,并且与MyoG的核定位显示出显著相关性。在肌纤维中,GsMTx4显著降低肌肉中p-CaMKII/CaMKII的水平和钙负荷。

结论

DMD中PIEZO1的上调可能源于肌膜损伤和肌肉坏死引发的增殖卫星细胞比例升高。GsMTx4对PIEZO1通道的抑制在促进成肌分化和减轻肌纤维损伤方面发挥有益作用。PIEZO1通道成为治疗DMD的一个有前景的治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7309/12076844/440af23b7fb4/13395_2025_383_Fig1_HTML.jpg

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