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结蛋白对于肌原纤维的抗张强度和完整性至关重要,但对于骨骼肌的生肌决定、分化和融合并非必需。

Desmin is essential for the tensile strength and integrity of myofibrils but not for myogenic commitment, differentiation, and fusion of skeletal muscle.

作者信息

Li Z, Mericskay M, Agbulut O, Butler-Browne G, Carlsson L, Thornell L E, Babinet C, Paulin D

机构信息

Station Centrale de Microscopie Electronique, Institut Pasteur, Paris, France.

出版信息

J Cell Biol. 1997 Oct 6;139(1):129-44. doi: 10.1083/jcb.139.1.129.

Abstract

A null mutation was introduced into the mouse desmin gene by homologous recombination. The desmin knockout mice (Des -/-) develop normally and are fertile. However, defects were observed after birth in skeletal, smooth, and cardiac muscles (Li, Z., E. Colucci-Guyon, M. Pincon-Raymond, M. Mericskay, S. Pournin, D. Paulin, and C. Babinet. 1996. Dev. Biol. 175:362-366; Milner, D.J., G. Weitzer, D. Tran, A. Bradley, and Y. Capetanaki. 1996. J. Cell Biol. 134:1255- 1270). In the present study we have carried out a detailed analysis of somitogenesis, muscle formation, maturation, degeneration, and regeneration in Des -/- mice. Our results demonstrate that all early stages of muscle differentiation and cell fusion occur normally. However, after birth, modifications were observed essentially in weight-bearing muscles such as the soleus or continually used muscles such as the diaphragm and the heart. In the absence of desmin, mice were weaker and fatigued more easily. The lack of desmin renders these fibers more susceptible to damage during contraction. We observed a process of degeneration of myofibers, accompanied by macrophage infiltration, and followed by a process of regeneration. These cycles of degeneration and regeneration resulted in a relative increase in slow myosin heavy chain (MHC) and decrease in fast MHC. Interestingly, this second wave of myofibrillogenesis during regeneration was often aberrant and showed signs of disorganization. Subsarcolemmal accumulation of mitochondria were also observed in these muscles. The lack of desmin was not compensated by an upregulation of vimentin in these mice either during development or regeneration. Absence of desmin filaments within the sarcomere does not interfere with primary muscle formation or regeneration. However, myofibrillogenesis in regenerating fibers is often abortive, indicating that desmin may be implicated in this repair process. The results presented here show that desmin is essential to maintain the structural integrity of highly solicited skeletal muscle.

摘要

通过同源重组将无效突变引入小鼠结蛋白基因。结蛋白基因敲除小鼠(Des -/-)发育正常且可育。然而,出生后在骨骼肌、平滑肌和心肌中观察到缺陷(Li, Z., E. Colucci-Guyon, M. Pincon-Raymond, M. Mericskay, S. Pournin, D. Paulin, and C. Babinet. 1996. Dev. Biol. 175:362 - 366; Milner, D.J., G. Weitzer, D. Tran, A. Bradley, and Y. Capetanaki. 1996. J. Cell Biol. 134:1255 - 1270)。在本研究中,我们对Des -/-小鼠的体节发生、肌肉形成、成熟、退化和再生进行了详细分析。我们的结果表明,肌肉分化和细胞融合的所有早期阶段均正常发生。然而,出生后,主要在诸如比目鱼肌等负重肌肉或诸如膈肌和心脏等持续使用的肌肉中观察到了变化。在没有结蛋白的情况下,小鼠更虚弱且更容易疲劳。结蛋白的缺失使这些纤维在收缩过程中更容易受到损伤。我们观察到肌纤维退化的过程,伴有巨噬细胞浸润,随后是再生过程。这些退化和再生循环导致慢肌球蛋白重链(MHC)相对增加,快MHC减少。有趣的是,再生过程中肌原纤维形成的第二波通常异常,并显示出紊乱的迹象。在这些肌肉中还观察到线粒体在肌膜下的积累。在这些小鼠的发育或再生过程中,结蛋白的缺乏也未通过波形蛋白的上调得到补偿。肌节内结蛋白丝的缺失并不干扰初级肌肉形成或再生。然而,再生纤维中的肌原纤维形成通常是失败的,这表明结蛋白可能参与了这个修复过程。此处呈现的结果表明,结蛋白对于维持高度受力的骨骼肌的结构完整性至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b68/2139820/cbdfffa7a846/JCB.10913f1.jpg

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