首页> 外文期刊>Neurobiology of disease >Nuclear speckles are involved in nuclear aggregation of PABPN1 and in the pathophysiology of oculopharyngeal muscular dystrophy
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Nuclear speckles are involved in nuclear aggregation of PABPN1 and in the pathophysiology of oculopharyngeal muscular dystrophy

机译:核斑与PABPN1的核聚集以及眼咽肌营养不良的病理生理有关

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Nuclear speckles are essential nuclear compartments involved in the assembly, delivery and recycling of pre-mRNA processing factors, and in the post-transcriptional processing of pre-mRNAs. Oculopharyngeal muscular dystrophy (OPMD) is caused by a small expansion of the polyalanine tract in the poly(A)-binding protein nuclear 1 (PABPN1). Aggregation of expanded PABPN1 into intranuclear inclusions (INIs) in skeletal muscle fibers is the pathological hallmark of OPMD. In this study what we have analyzed in muscle fibers of OPMD patients and in primary cultures of human myoblasts are the relationships between nuclear speckles and INIs, and the contribution of the former to the biogenesis of the latter. While nuclear speckles concentrate snRNP splicing factors and PABPN1 in control muscle fibers, they are depleted of PABPN1 and appear closely associated with INIs in muscle fibers of OPMD patients. The induction of INI formation in human myoblasts expressing either wild type GFP-PABPN1 or expanded GFP-PABPN1-17ala demonstrates that the initial aggregation of PABPN1 proteins and their subsequent growth in INIs occurs at the edges of the nuclear speckles. Moreover, the growing of INIs gradually depletes PABPN1 proteins and poly(A) RNA from nuclear speckles, although the existence of these nuclear compartments is preserved. Time-lapse experiments in cultured myoblasts confirm nuclear speckles as biogenesis sites of PABPN1 inclusions. Given the functional importance of nuclear speckles in the post-transcriptional processing of pre-mRNAs, the INI-dependent molecular reorganization of these nuclear compartments in muscle fibers may cause a severe dysfunction in nuclear trafficking and processing of polyadenylated mRNAs, thereby contributing to the molecular pathophysiology of OPMD. Our results emphasize the potential importance of nuclear speckles as nuclear targets of neuromuscular disorders.
机译:核斑点是参与前mRNA加工因子的组装,传递和回收以及前mRNA转录后加工的重要核区室。眼咽肌营养不良症(OPMD)是由poly(A)结合蛋白核1(PABPN1)中的聚丙氨酸束小膨胀引起的。扩张的PABPN1聚集到骨骼肌纤维中的核内包裹体(INIs)中是OPMD的病理特征。在这项研究中,我们在OPMD患者的肌纤维和人类成肌细胞的原代培养物中分析的是核斑点和INI之间的关系,以及前者对后者的生物发生的贡献。虽然核斑点将snRNP剪接因子和PABPN1集中在对照肌纤维中,但它们却被耗尽了PABPN1,并与OPMD患者肌纤维中的INI密切相关。在表达野生型GFP-PABPN1或扩展的GFP-PABPN1-17ala的人成肌细胞中INI的诱导表明,PABPN1蛋白的初始聚集及其在INI中的后续生长发生在核斑点的边缘。此外,尽管保留了这些核区的存在,但INI的生长逐渐消除了核斑点上的PABPN1蛋白和poly(A)RNA。在培养的成肌细胞中进行的延时实验证实核斑点是PABPN1内含物的生物发生位点。鉴于核斑点在前mRNA的转录后加工中的功能重要性,肌肉纤维中这些核区室的INI依赖分子重组可能会导致核运输和多腺苷酸化mRNA加工的严重功能障碍,从而有助于分子OPMD的病理生理学。我们的结果强调了核斑点作为神经肌肉疾病的核靶标的潜在重要性。

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