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组成性特性而非分子适应性介导了营养不良性mdx小鼠眼外肌的保留。

Constitutive properties, not molecular adaptations, mediate extraocular muscle sparing in dystrophic mdx mice.

作者信息

Porter John D, Merriam Anita P, Khanna Sangeeta, Andrade Francisco H, Richmonds Chelliah R, Leahy Patrick, Cheng Georgiana, Karathanasis Paraskevi, Zhou Xiaohua, Kusner Linda L, Adams Marvin E, Willem Michael, Mayer Ulrike, Kaminski Henry J

机构信息

Department of Ophthalmology, Case Western Reserve University and The Research Institute of University Hospitals of Cleveland, 11100 Euclid Ave., Cleveland, Ohio 44106-5068, USA.

出版信息

FASEB J. 2003 May;17(8):893-5. doi: 10.1096/fj.02-0810fje. Epub 2003 Mar 28.

Abstract

Extraocular muscle (EOM) is spared in Duchenne muscular dystrophy. Here, we tested putative EOM sparing mechanisms predicted from existing dystrophinopathy models. Data show that mdx mouse EOM contains dystrophin-glycoprotein complex (DGC)-competent and DGC-deficient myofibers distributed in a fiber type-specific pattern. Up-regulation of a dystrophin homologue, utrophin, mediates selective DGC retention. Counter to the DGC mechanical hypothesis, an intact DGC is not a precondition for EOM sarcolemmal integrity, and active adaptation at the level of calcium homeostasis is not mechanistic in protection. A partial, fiber type-specific retention of antiischemic nitric oxide to vascular smooth muscle signaling is not a factor in EOM sparing, because mice deficient in dystrophin and alpha-syntrophin, which localizes neuronal nitric oxide synthase to the sarcolemma, have normal EOMs. Moreover, an alternative transmembrane protein, alpha7beta1 integrin, does not appear to substitute for the DGC in EOM. Finally, genomewide expression profiling showed that EOM does not actively adapt to dystrophinopathy but identified candidate genes for the constitutive protection of mdx EOM. Taken together, data emphasize the conditional nature of dystrophinopathy and the potential importance of nonmechanical DGC roles and support the hypothesis that broad, constitutive structural cell signaling, and/or biochemical differences between EOM and other skeletal muscles are determinants of differential disease responsiveness.

摘要

杜氏肌营养不良症患者的眼外肌(EOM)未受影响。在此,我们测试了从现有肌营养不良症模型预测的假定眼外肌保护机制。数据显示,mdx小鼠的眼外肌含有以纤维类型特异性模式分布的具有抗肌萎缩蛋白糖蛋白复合物(DGC)功能的肌纤维和缺乏DGC的肌纤维。抗肌萎缩蛋白同源物——肌营养蛋白的上调介导了DGC的选择性保留。与DGC机械假说相反,完整的DGC并非眼外肌肌膜完整性的先决条件,并且钙稳态水平的主动适应在保护机制中不起作用。抗缺血性一氧化氮对血管平滑肌信号传导的部分、纤维类型特异性保留不是眼外肌保护的因素,因为缺乏抗肌萎缩蛋白和α-肌营养不良素(将神经元型一氧化氮合酶定位于肌膜)的小鼠的眼外肌正常。此外,另一种跨膜蛋白α7β1整合素似乎不能在眼外肌中替代DGC。最后,全基因组表达谱分析表明,眼外肌不会主动适应肌营养不良症,但确定了mdx小鼠眼外肌组成性保护的候选基因。综上所述,数据强调了肌营养不良症的条件性质以及非机械性DGC作用的潜在重要性,并支持以下假说:广泛的、组成性的结构细胞信号传导和/或眼外肌与其他骨骼肌之间的生化差异是疾病反应性差异的决定因素。

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