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可视化骨骼肌中的肌节和细胞动态以改善细胞疗法。

Visualizing sarcomere and cellular dynamics in skeletal muscle to improve cell therapies.

作者信息

Hüttemeister Judith, Rudolph Franziska, Radke Michael H, Fink Claudia, Friedrich Dhana, Preibisch Stephan, Falcke Martin, Wagner Eva, Lehnart Stephan E, Gotthardt Michael

机构信息

Translational Cardiology and Functional Genomics, Max Delbrück Center for Molecular Medicine, Berlin, Germany.

DZHK (German Centre for Cardiovascular Research), Partner Site, Berlin, Germany.

出版信息

Elife. 2024 Dec 17;13:e95597. doi: 10.7554/eLife.95597.

Abstract

The giant striated muscle protein titin integrates into the developing sarcomere to form a stable myofilament system that is extended as myocytes fuse. The logistics underlying myofilament assembly and disassembly have started to emerge with the possibility to follow labeled sarcomere components. Here, we generated the mCherry knock-in at titin's Z-disk to study skeletal muscle development and remodeling. We find titin's integration into the sarcomere tightly regulated and its unexpected mobility facilitating a homogeneous distribution of titin after cell fusion - an integral part of syncytium formation and maturation of skeletal muscle. In adult mCherry-titin mice, treatment of muscle injury by implantation of titin-eGFP myoblasts reveals how myocytes integrate, fuse, and contribute to the continuous myofilament system across cell boundaries. Unlike in immature primary cells, titin proteins are retained at the proximal nucleus and do not diffuse across the whole syncytium with implications for future cell-based therapies of skeletal muscle disease.

摘要

巨大的横纹肌蛋白肌联蛋白整合到发育中的肌节中,形成一个稳定的肌丝系统,该系统随着肌细胞融合而延伸。随着追踪标记的肌节成分成为可能,肌丝组装和拆卸背后的机制已开始显现。在这里,我们在肌联蛋白的Z盘处产生了mCherry基因敲入,以研究骨骼肌的发育和重塑。我们发现肌联蛋白整合到肌节中的过程受到严格调控,其意外的流动性促进了细胞融合后肌联蛋白的均匀分布——这是骨骼肌多核细胞形成和成熟不可或缺的一部分。在成年mCherry-肌联蛋白小鼠中,通过植入肌联蛋白-eGFP成肌细胞治疗肌肉损伤,揭示了肌细胞如何跨细胞边界整合、融合并形成连续的肌丝系统。与未成熟的原代细胞不同,肌联蛋白保留在近端细胞核处,不会在整个多核细胞中扩散,这对未来基于细胞的骨骼肌疾病治疗具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6cd8/11651650/1c52a1f395a2/elife-95597-fig1.jpg

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