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首页> 外文期刊>American Journal of Physiology >Overexpression of Galgt2 in skeletal muscle prevents injury resulting from eccentric contractions in both mdx and wild-type mice.
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Overexpression of Galgt2 in skeletal muscle prevents injury resulting from eccentric contractions in both mdx and wild-type mice.

机译:骨骼肌中Galgt2的过度表达可防止损伤由MDX和野生型小鼠中的偏心收缩产生。

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摘要

The cytotoxic T cell (CT) GalNAc transferase, or Galgt2, is a UDP-GalNAc:beta1,4-N-acetylgalactosaminyltransferase that is localized to the neuromuscular synapse in adult skeletal muscle, where it creates the synaptic CT carbohydrate antigen {GalNAcbeta1,4[NeuAc(orGc)alpha2, 3]Galbeta1,4GlcNAcbeta-}. Overexpression of Galgt2 in the skeletal muscles of transgenic mice inhibits the development of muscular dystrophy in mdx mice, a model for Duchenne muscular dystrophy. Here, we provide physiological evidence as to how Galgt2 may inhibit the development of muscle pathology in mdx animals. Both Galgt2 transgenic wild-type and mdx skeletal muscles showed a marked improvement in normalized isometric force during repetitive eccentric contractions relative to nontransgenic littermates, even using a paradigm where nontransgenic muscles had force reductions of 95% or more. Muscles from Galgt2 transgenic mice, however, showed a significant decrement in normalized specific force and in hindlimb and forelimb grip strength at some ages. Overexpression of Galgt2 in muscles of young adult mdx mice, where Galgt2 has no effect on muscle size, also caused a significant decrease in force drop during eccentric contractions and increased normalized specific force. A comparison of Galgt2 and microdystrophin overexpression using a therapeutically relevant intravascular gene delivery protocol showed Galgt2 was as effective as microdystrophin at preventing loss of force during eccentric contractions. These experiments provide a mechanism to explain why Galgt2 overexpression inhibits muscular dystrophy in mdx muscles. That overexpression also prevents loss of force in nondystrophic muscles suggests that Galgt2 is a therapeutic target with broad potential applications.
机译:细胞毒性T细胞(CT)GalNAc转移酶或GALGT2是UDP-GALNAC:β1,4-乙酰甘氨酸氨基氨基丙烷酰基转移酶,其局部化为成人骨骼肌中的神经肌肉突触,在那里它产生突触CT碳水化合物抗原{Galnacbeta1,4 [Neuac(ORGC)alpha2,3] Galbeta1,4glcnacbeta-}。转基因小鼠骨骼肌中Galgt2的过度表达抑制MDX小鼠中肌营养不良的发育,Duchenne肌营养不良的模型。在这里,我们提供Galgt2如何抑制MDX动物肌肉病理学的发展的生理证据。 GalGT2转基因野生型和MDX骨架肌肉均显示出相对于非转基因凋落物的重复偏心收缩期间标准化的等距力的显着改善,甚至使用非转化肌的范式,其中不经常肌肉减少95%以上。然而,Galgt2转基因小鼠的肌肉显示出归一化的特定力和在后肢和后肢握力的血压下显着下降。在幼年成年MDX小鼠的肌肉中的Galgt2的过度表达,Galgt2对肌肉尺寸没有影响,也导致偏心收缩期间力下降的显着降低,并增加了归一化的特定力。使用治疗性相关的血管内基因递送方案的GALGT2和微量疗法过表达的比较显示GALGT2在偏心收缩期间防止力损失时与微量核蛋白有效。这些实验提供了解释为什么Galgt2过表达抑制MDX肌肉中肌营养不调的机制。这种过度表达还可以防止非卵形肌肉中的力丧失表明GalgT2是具有广泛潜在应用的治疗靶标。

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