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Independent variability of microtubule perturbations associated with dystrophinopathy

机译:与DoStophinopathy相关的微管扰动的独立变异性

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摘要

Absence of the protein dystrophin causes Duchenne muscular dystrophy. Dystrophin directly binds to microtubules in vitro, and its absence in vivo correlates with disorganization of the subsarcolemmal microtubule lattice, increased detyrosination of α-tubulin, and altered redox signaling. We previously demonstrated that the dystrophin homologue utrophin neither binds microtubules in vitro nor rescues microtubule lattice organization when overexpressed in muscles of dystrophin-deficient mdx mice. Here, we fine-mapped the dystrophin domain necessary for microtubule binding to spectrin-like repeats 20–22. We show that transgenic mdx mice expressing a full-length dystrophin/utrophin chimera completely lacking microtubule binding activity are surprisingly rescued for all measured dystrophic phenotypes, including full restoration of microtubule lattice organization. Conversely, despite the presence of dystrophin at the sarcolemma, β-sarcoglycan-deficient skeletal muscle presents with a disorganized and densified microtubule lattice. Finally, we show that the levels of α-tubulin detyrosination remain significantly elevated to that of mdx levels in transgenic mdx mice expressing nearly full-length dystrophin. Our results demonstrate that the microtubule-associated perturbations of mdx muscle are distinct, separable, and can vary independently from other parameters previously ascribed to dystrophin deficiency.
机译:没有蛋白质染素导致杜氏肌营养不良症。营养不良蛋白在体外直接与微管结合,并且其体内缺失与子半音微管晶格的紊乱相关,α-微管蛋白的髓质循环和改变的氧化还原信号传导。我们之前证明患营养不良素同源物嗜症蛋白在缺乏缺陷型MDX小鼠的肌肉中过表达时,在体外既不结合微管,也不结合微管晶格组织。在这里,我们精细映射了微管与光谱样重复20-22的微管结合所需的肌管域。我们表明,对于所有测量的营养不良表型,令人惊讶地救出了表达全长患者/嗜胞盆嵌合体的转基因MDX小鼠令人惊讶地救出了微管术表型。相反,尽管在Sarcolemma存在肌营养不良蛋白,但β-嗜酸性缺乏的骨骼肌呈杂乱,致密的微管晶格呈现。最后,我们表明α-微管蛋白序列的水平仍然显着升高到表达几乎全长营养蛋白的转基因MDX小鼠中的MDX水平。我们的结果表明,MDX肌肉的微管相关的扰动是不同的,可分离的,并且可以独立于以前归因于营养蛋白缺乏的其他参数而变化。

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