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Myodegeneration in EDA-A2 Transgenic Mice Is Prevented by XEDAR Deficiency

机译:XEDAR缺乏可预防EDA-A2转基因小鼠的成肌

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摘要

EDA-A1 and EDA-A2 are members of the tumor necrosis factor family of ligands. The products of alternative splicing of the ectodysplasin (EDA) gene, EDA-A1 and EDA-A2 differ by an insertion of two amino acids and bind to distinct receptors. The longer isoform, EDA-A1, binds to EDAR and plays an important role in sweat gland, hair, and tooth development; mutations in EDA, EDAR, or the downstream adaptor EDARADD cause hypohidrotic ectodermal dysplasia. EDA-A2 engages the receptor XEDAR, but its role in the whole organism is less clear. We have generated XEDAR-deficient mice by gene targeting and transgenic mice expressing secreted forms of EDA-A1 or EDA-A2 downstream of the skeletal muscle-specific myosin light-chain 2 or skin-specific keratin 5 promoter. Mice lacking XEDAR were indistinguishable from their wild-type littermates, but EDA-A2 transgenic mice exhibited multifocal myodegeneration. This phenotype was not observed in the absence of XEDAR. Skeletal muscle in EDA-A1 transgenic mice was unaffected, but their sebaceous glands were hypertrophied and hyperplastic, consistent with a role for EDA-A1 in the development of these structures. These data indicate that XEDAR-transduced signals are dispensable for development of ectoderm-derived organs but might play a role in skeletal muscle homeostasis.
机译:EDA-A1和EDA-A2是配体的肿瘤坏死因子家族的成员。 ectodysplasin(EDA)基因的选择性剪接产物EDA-A1和EDA-A2的区别在于插入了两个氨基酸,并与不同的受体结合。较长的同工型EDA-A1与EDAR结合,在汗腺,头发和牙齿发育中起重要作用。 EDA,EDAR或下游衔接子EDARADD中的突变会引起多汗症性外胚层发育不良。 EDA-A2与受体XEDAR结合,但在整个生物体中的作用尚不清楚。我们已经通过基因靶向产生了XEDAR缺陷小鼠,并在骨骼肌特异性肌球蛋白轻链2或皮肤特异性角蛋白5启动子的下游表达了EDA-A1或EDA-A2分泌形式的转基因小鼠。缺乏XEDAR的小鼠与野生同窝小鼠没有区别,但是EDA-A2转基因小鼠表现出多灶性成肌。在没有XEDAR的情况下未观察到该表型。 EDA-A1转基因小鼠的骨骼肌未受影响,但它们的皮脂腺肥大和增生,与EDA-A1在这些结构发育中的作用一致。这些数据表明,XEDAR转换的信号对于外胚层衍生器官的发育是必不可少的,但可能在骨骼肌稳态中发挥作用。

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