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化学伴侣可改善束蛋白缺陷肌中的病理性蛋白聚集。

Chemical chaperone ameliorates pathological protein aggregation in plectin-deficient muscle.

出版信息

J Clin Invest. 2014 Mar;124(3):1144-57. doi: 10.1172/JCI71919.

Abstract

The ubiquitously expressed multifunctional cytolinker protein plectin is essential for muscle fiber integrity and myofiber cytoarchitecture. Patients suffering from plectinopathy-associated epidermolysis bullosa simplex with muscular dystrophy (EBS-MD) and mice lacking plectin in skeletal muscle display pathological desmin-positive protein aggregation and misalignment of Z-disks, which are hallmarks of myofibrillar myopathies (MFMs). Here, we developed immortalized murine myoblast cell lines to examine the pathogenesis of plectinopathies at the molecular and single cell level. Plectin-deficient myotubes, derived from myoblasts, were fully functional and mirrored the pathological features of EBS-MD myofibers, including the presence of desmin-positive protein aggregates and a concurrent disarrangement of the myofibrillar apparatus. Using this cell model, we demonstrated that plectin deficiency leads to increased intermediate filament network and sarcomere dynamics, marked upregulation of HSPs, and reduced myotube resilience following mechanical stretch. Currently, no specific therapy or treatment is available to improve plectin-related or other forms of MFMs; therefore, we assessed the therapeutic potential of chemical chaperones to relieve plectinopathies. Treatment with 4-phenylbutyrate resulted in remarkable amelioration of the pathological phenotypes in plectin-deficient myotubes as well as in plectin-deficient mice. Together, these data demonstrate the biological relevance of the MFM cell model and suggest that this model has potential use for the development of therapeutic approaches for EBS-MD.

摘要

普遍表达的多功能细胞连接蛋白 plectin 对于肌纤维完整性和肌纤维细胞结构是必不可少的。患有 plectinopathy 相关的单纯性表皮松解症伴肌肉营养不良症 (EBS-MD) 的患者和缺乏骨骼肌肉 plectin 的小鼠显示出病理性的 desmin 阳性蛋白聚集和 Z 盘排列不齐,这是肌原纤维肌病 (MFMs) 的标志。在这里,我们开发了永生化的鼠成肌细胞系,以在分子和单细胞水平上研究 plectinopathy 的发病机制。从成肌细胞衍生而来的 plectin 缺陷肌管是完全功能性的,反映了 EBS-MD 肌纤维的病理特征,包括存在 desmin 阳性蛋白聚集和肌原纤维装置的同时排列紊乱。使用这种细胞模型,我们证明了 plectin 缺乏会导致中间丝网络和肌节动力学增加、HSPs 的显著上调以及机械拉伸后肌管的弹性降低。目前,尚无改善 plectin 相关或其他形式的 MFMs 的特定治疗或治疗方法;因此,我们评估了化学伴侣物的治疗潜力,以缓解 plectinopathy。用 4-苯基丁酸治疗可显著改善 plectin 缺陷肌管以及 plectin 缺陷小鼠的病理表型。这些数据共同证明了 MFM 细胞模型的生物学相关性,并表明该模型有可能用于开发 EBS-MD 的治疗方法。

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