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首页> 外文期刊>Human Molecular Genetics >Prevention of oculopharyngeal muscular dystrophy-associated aggregation of nuclear polyA-binding protein with a single-domain intracellular antibody.
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Prevention of oculopharyngeal muscular dystrophy-associated aggregation of nuclear polyA-binding protein with a single-domain intracellular antibody.

机译:用单结构域细胞内抗体预防眼咽肌营养不良相关的核polyA结合蛋白聚集。

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摘要

Oculopharyngeal muscular dystrophy (OPMD) belongs to the group of protein aggregation disorders and is caused by extensions of the N-terminal polyalanine stretch of the nuclear polyA-binding protein 1 (PABPN1). The presence of PABPN1-containing intranuclear aggregates in skeletal muscle is unique for OPMD and is also observed in transgenic mouse and cell models for OPMD. These models consistently support a direct role for the protein aggregation in OPMD pathogenesis. We have isolated and characterized a diverse panel of single-domain antibody reagents (VHH), recognizing different epitopes in PABPN1. The antibody reagents specifically detect endogenous PABPN1 in cell lysates on western blot and label PABPN1 in cultured cells and muscle sections. When expressed intracellularly as intrabodies in a cellular model for OPMD, aggregation of PABPN1 was prevented in a dose-dependent manner. More importantly yet, these intrabodies could also reduce the presence of already existing aggregates. Given the domain specificity of VHH-mediated aggregation interference, this approach at least allows the definition of the nucleation kernel in aggregation-prone proteins, thus facilitating etiological insight into this and other protein aggregation disorders, and ultimately, it may well provide useful therapeutic agents.
机译:眼咽肌营养不良症(OPMD)属于蛋白质聚集疾病,是由核polyA结合蛋白1(PABPN1)的N末端聚丙氨酸延伸引起的。骨骼肌中含有PABPN1的核内聚集体对于OPMD而言是独特的,并且在转基因小鼠和OPMD细胞模型中也可以观察到。这些模型始终支持蛋白质在OPMD发病机理中的直接作用。我们已经分离并鉴定了多种多样的单域抗体试剂(VHH),可识别PABPN1中的不同表位。抗体试剂可在Western印迹法上特异性检测细胞裂解物中的内源性PABPN1,并在培养的细胞和肌肉切片中标记PABPN1。当在细胞模型中作为OPMD的胞内抗体在细胞内表达时,PABPN1的聚集以剂量依赖性方式被阻止。更重要的是,这些体内抗体还可以减少已经存在的聚集体的存在。考虑到VHH介导的聚集干扰的域特异性,这种方法至少可以在易于聚集的蛋白质中定义成核核心,从而有助于病因学上的深入研究,并最终提供了有用的治疗剂。

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