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Interstitial cells of Cajal, enteric neurons, and smooth muscle and myoid cells of the murine gastrointestinal tract express full-length dystrophin

机译:鼠胃肠道的Cajal间质细胞,肠神经元以及平滑肌和肌样细胞表达全长肌营养不良蛋白

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摘要

A gene located on the X chromosome is responsible for the transcription of several mRNA and related dystrophin isoforms. Lack or truncated expression of the 427-kDa, full-length isoform in skeletal muscle results in Duchenne muscular dystrophy (DMD). Patients with DMD, as well as mdx mice, a mutant strain also lacking this isoform, show gastrointestinal dismotilities. The present aim was to identify the cell types that express full-length dystrophic in the gastrointestinal tract. An immunohistochemical study was performed using an antibody specific for this isoform, and double labelings were made for interstitial cells of Cajal (ICC) identification and to verify whether all neurons express full-length dystrophic. Three different fixation procedures were used. The results showed that ICC, enteric neurons, and smooth muscle and myoid cells expressed full-length dystrophic. In ICC and neurons, dystrophic-immunoreactive patches were irregularly distributed at the cell contour and within the cytoplasm. In smooth muscle and myoid cells, regularly spaced dystrophic-immunoreactive bars were located along the cell contour. Labeling intensity varied according to fixation procedure. The different subcellular distributions of dystrophic immunoreactivity might reflect diverse roles played by full-length isoforms in each cell type. Dystrophin loss in cells involved in gastrointestinal motility might explain the gastrointestinal symptomatology affecting DMD patients and mdx mice.
机译:位于X染色体上的一个基因负责几种mRNA和相关的肌营养不良蛋白亚型的转录。骨骼肌中427 kDa全长亚型的缺乏或截短表达会导致Duchenne肌营养不良(DMD)。 DMD以及mdx小鼠(一种也缺乏这种同种型的突变株)的患者表现出胃肠动力障碍。本发明的目的是鉴定在胃肠道中表达全长营养不良的细胞类型。使用对该亚型特异的抗体进行了免疫组织化学研究,并对Cajal间质细胞(ICC)进行了双重标记,以验证是否所有神经元都表达全长营养不良。使用了三种不同的固定程序。结果显示ICC,肠神经元以及平滑肌和肌样细胞表达全长营养不良。在ICC和神经元中,营养不良性免疫反应性斑块不规则地分布在细胞轮廓和细胞质内。在平滑肌和肌样细胞中,沿细胞轮廓定位有规律间隔的营养不良免疫反应条。标记强度根据固定程序而变化。营养不良性免疫反应性的不同亚细胞分布可能反映了每种细胞类型中全长同工型所起的不同作用。胃肠蠕动所涉及的细胞中肌营养不良蛋白的丢失可能解释了影响DMD患者和mdx小鼠的胃肠症状。

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