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首页> 外文期刊>Molecular and cellular neurosciences >The synaptic CT carbohydrate modulates binding and expression of extracellular matrix proteins in skeletal muscle: Partial dependence on utrophin
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The synaptic CT carbohydrate modulates binding and expression of extracellular matrix proteins in skeletal muscle: Partial dependence on utrophin

机译:突触CT碳水化合物调节骨骼肌中细胞外基质蛋白的结合和表达:部分依赖于卵磷脂

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摘要

The CT carbohydrate, Neu5Ac/Neu5Gcα2,3[GaINAcβ1,4]Galβ1,4GIcNAcβ-, is specifically expressed at the neuromuscular junction in skeletal myofibers of adult vertebrates. When Galgt2, the glycosyltransferase that creates the synaptic β1,4GalNAc portion of this glycan, is overexpressed in extrasynaptic regions of the myofiber membrane, a dystroglycan becomes glycosylated with the CT carbohydrate and this coincides with the ectopic expression of synaptic dystroglycan-binding proteins, including laminin α4, laminin α5, and utrophin. Here we show that both synaptic and extrasynaptic forms of laminin and agrin have increased binding to the CT carbohydrate compared to sialyl-N-acetyllactosamine, its extrasynaptically expressed precursor. Muscle laminins also show increased binding to CT-glycosylated muscle α dystroglycan relative to its non-CT-containing glycoforms. Overexpression of Galgt2 in transgenic mouse skeletal muscle increased the mRNA expression of extracellular matrix (ECM) genes, including agrin and laminin α5, as well as utrophin, integrin α7, and neuregulin. Increased expression of ECM proteins in Galgt2 transgenic skeletal muscles was partially dependent on utrophin, but utrophin was not required for Galgt2-induced changes in muscle growth or neuromuscular development. These experiments demonstrate that overexpression of a synaptic carbohydrate can increase both ECM binding to a dystroglycan and ECM expression in skeletal muscle, and they suggest a mechanism by which Galgt2 overexpression may inhibit muscular dystrophy and affect neuromuscular development.
机译:CT碳水化合物Neu5Ac /Neu5Gcα2,3[GaINAcβ1,4]Galβ1,4GIcNAcβ-特别表达在成年脊椎动物骨骼肌纤维的神经肌肉接头处。当在该纤维膜的突触外区域过度表达产生该聚糖的突触β1,4GalNAc部分的糖基转移酶Galgt2时,一种dystroglycan被CT碳水化合物糖基化,这与突触dystroglycan结合蛋白的异位表达相吻合,包括层粘连蛋白α4,层粘连蛋白α5和促卵磷脂。在这里,我们显示层粘连蛋白和凝集素的突触和突触外形式均比其突触外表达的前体唾液酸-N-乙酰基乳糖胺增加了与CT碳水化合物的结合。相对于其不含CT的糖型,肌肉层粘连蛋白还显示出与CT糖基化肌肉αdystroglycan的结合增加。 Galgt2在转基因小鼠骨骼肌中的过表达增加了细胞外基质(ECM)基因的mRNA表达,其中包括凝集素和层粘连蛋白α5,以及卵磷脂,整合素α7和神经调节蛋白。在Galgt2转基因骨骼肌中ECM蛋白表达的增加部分依赖于卵磷脂,但是Galgt2诱导的肌肉生长或神经肌肉发育变化不需要卵磷脂。这些实验表明,突触碳水化合物的过度表达可以增加ECM与肌营养不良蛋白的结合以及骨骼肌中ECM的表达,并且它们提示了Galgt2过度表达可能抑制肌肉营养不良并影响神经肌肉发育的机制。

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