Wehling M, Stull J T, McCabe T J, Tidball J G
Department of Physiological Science, University of California, Los Angeles 90095-1527, USA.
Neuromuscul Disord. 1998 Feb;8(1):22-9. doi: 10.1016/s0960-8966(97)00136-3.
Previous findings have led to speculations that decreased concentration of nNOS (neuronal nitric oxide synthase) may underlie some aspects of the pathophysiology of dystrophic muscle. We have tested whether the sparing of extraocular muscles (EOM) in muscular dystrophy is attributable to the presence of normal nNOS concentration and distribution in these muscles. Measurements of total nNOS concentration in control muscle showed that total nNOS comprises approximately 0.05% of total muscle protein, indicating a molar stoichiometry of approximately 60 and 20 to total dystrophin and syntrophin, respectively. Thus, most muscle nNOS is either not associated with the dystrophin complex, or binds to yet unidentified sites in the complex. nNOS concentration was at least two-fold greater in C57 EOM and tibialis anterior (TA) compared with mdx samples. No significant differences in nNOS concentration in EOM versus TA in either mdx or C57 mice were observed, nNOS was concentrated at the sarcolemma of all C57 samples, while mdx nNOS displayed a cytosolic distribution, except in fibers that reverted to express dystrophin. These data show that mdx EOM are spared by a mechanism other than normalized concentration and location of nNOS.
神经元型一氧化氮合酶(nNOS)浓度降低可能是营养不良性肌肉病理生理学某些方面的基础。我们已经测试了眼外肌(EOM)在肌肉营养不良中得以幸免是否归因于这些肌肉中nNOS浓度和分布正常。对照肌肉中总nNOS浓度的测量结果表明,总nNOS约占肌肉总蛋白的0.05%,这表明其与肌营养不良蛋白和肌联蛋白的摩尔化学计量比分别约为60和20。因此,大多数肌肉nNOS要么不与肌营养不良蛋白复合物相关,要么与复合物中尚未确定的位点结合。与mdx样本相比,C57小鼠的EOM和胫前肌(TA)中的nNOS浓度至少高出两倍。在mdx或C57小鼠中,未观察到EOM与TA的nNOS浓度有显著差异,nNOS集中在所有C57样本的肌膜上,而mdx的nNOS呈胞质分布,但恢复表达肌营养不良蛋白的纤维除外。这些数据表明,mdx EOM得以幸免的机制并非nNOS浓度和位置正常化。