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The syntrophin-dystrobrevin subcomplex in human neuromuscular disorders.

机译:人神经肌肉疾病中的突触素-dystrobrevin亚复合体。

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The syntrophins and alpha-dystrobrevin form a subcomplex with dystrophin at the skeletal muscle membrane, and are also highly concentrated at the neuromuscular synapse. Here we demonstrate that the different syntrophins and alpha-dystrobrevin isoforms have distinct expression patterns during human skeletal muscle development, and are differentially affected by loss of dystrophin anchorage and denervation in human neuromuscular disease. During normal fetal development, and in Duchenne muscular dystrophy and denervation disorders, alpha1-syntrophin and alpha-dystrobrevin are absent or markedly reduced at the sarcolemmal membrane. beta1-Syntrophin is the predominant syntrophin isoform expressed at the muscle membrane during development, and it undergoes upregulation in response to loss of alpha1-syntrophin in Duchenne muscular dystrophy and in denervation. Upregulation of beta1-syntrophin in neuromuscular disorders is associated with re-expression of the fetal nicotinic acetylcholine receptor gamma-subunit, cardiac actin, and neonatal myosin, suggesting reversion of muscle fibers to an immature phenotype. We show that denervation specifically affects expression of the syntrophin-dystrobrevin subcomplex and does not affect levels or localization of other members of the dystrophin-associated protein complex. Our results confirm that dystrophin is required for anchorage of the syntrophin-dystrobrevin subcomplex and suggest that expression of the syntrophin-dystrobrevin complex may be independently regulated through neuromuscular transmission.
机译:syntrophins和α-dystrobrevin与dystrophin在骨骼肌膜上形成亚复合物,并且在神经肌肉突触中也高度集中。在这里,我们证明了不同的突触融合蛋白和α-dystrobrevin亚型在人类骨骼肌发育过程中具有独特的表达模式,并且在人类神经肌肉疾病中受到肌营养不良蛋白锚定的损失和神经支配的不同影响。在正常的胎儿发育过程中,以及在杜兴氏肌营养不良和神经支配失调中,肌膜上不存在α1-突触蛋白和α-肌营养不良素或明显减少。 beta1-Syntrophin是发育过程中在肌肉膜上表达的主要syntrophin亚型,它响应于Duchenne肌营养不良症和去神经支配中α1-syntrophin的损失而上调。神经肌肉疾病中β1-syntrophin的上调与胎儿烟碱型乙酰胆碱受体γ亚基,心脏肌动蛋白和新生儿肌球蛋白的重新表达有关,提示肌肉纤维回复到未成熟的表型。我们表明去神经支配具体影响的突触素-dystrobrevin亚复合物的表达,并且不影响与肌营养不良蛋白相关的蛋白质复合物的其他成员的水平或本地化。我们的结果证实,肌营养不良蛋白是合成肌营养蛋白-dystrobrevin亚复合物的锚定所必需的,并表明合成肌营养蛋白-dystrobrevin复合物的表达可以通过神经肌肉传递独立调节。

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