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新型眼咽型肌营养不良症(OPMD)小鼠模型揭示了早期线粒体缺陷,并表明聚腺苷酸结合蛋白核1(PABPN1)的缺失可能导致病变。

Novel mouse models of oculopharyngeal muscular dystrophy (OPMD) reveal early onset mitochondrial defects and suggest loss of PABPN1 may contribute to pathology.

作者信息

Vest Katherine E, Phillips Brittany L, Banerjee Ayan, Apponi Luciano H, Dammer Eric B, Xu Weiting, Zheng Dinghai, Yu Julia, Tian Bin, Pavlath Grace K, Corbett Anita H

机构信息

Department of Pharmacology, Emory University School of Medicine, Atlanta, GA, USA.

Department of Biology, Emory University, Atlanta, GA, USA.

出版信息

Hum Mol Genet. 2017 Sep 1;26(17):3235-3252. doi: 10.1093/hmg/ddx206.

Abstract

Oculopharyngeal muscular dystrophy (OPMD) is a late onset disease caused by polyalanine expansion in the poly(A) binding protein nuclear 1 (PABPN1). Several mouse models have been generated to study OPMD; however, most of these models have employed transgenic overexpression of alanine-expanded PABPN1. These models do not recapitulate the OPMD patient genotype and PABPN1 overexpression could confound molecular phenotypes. We have developed a knock-in mouse model of OPMD (Pabpn1+/A17) that contains one alanine-expanded Pabpn1 allele under the control of the native promoter and one wild-type Pabpn1 allele. This mouse is the closest available genocopy of OPMD patients. We show that Pabpn1+/A17 mice have a mild myopathic phenotype in adult and aged animals. We examined early molecular and biochemical phenotypes associated with expressing native levels of A17-PABPN1 and detected shorter poly(A) tails, modest changes in poly(A) signal (PAS) usage, and evidence of mitochondrial damage in these mice. Recent studies have suggested that a loss of PABPN1 function could contribute to muscle pathology in OPMD. To investigate a loss of function model of pathology, we generated a heterozygous Pabpn1 knock-out mouse model (Pabpn1+/Δ). Like the Pabpn1+/A17 mice, Pabpn1+/Δ mice have mild histologic defects, shorter poly(A) tails, and evidence of mitochondrial damage. However, the phenotypes detected in Pabpn1+/Δ mice only partially overlap with those detected in Pabpn1+/A17 mice. These results suggest that loss of PABPN1 function could contribute to but may not completely explain the pathology detected in Pabpn1+/A17 mice.

摘要

眼咽型肌营养不良症(OPMD)是一种迟发性疾病,由多聚腺苷酸结合蛋白核1(PABPN1)中的多聚丙氨酸扩增引起。已经构建了几种小鼠模型来研究OPMD;然而,这些模型大多采用丙氨酸扩增的PABPN1转基因过表达。这些模型不能重现OPMD患者的基因型,并且PABPN1过表达可能会混淆分子表型。我们开发了一种OPMD的基因敲入小鼠模型(Pabpn1+/A17),该模型在天然启动子的控制下包含一个丙氨酸扩增的Pabpn1等位基因和一个野生型Pabpn1等位基因。这种小鼠是最接近OPMD患者的基因拷贝。我们发现Pabpn1+/A17小鼠在成年和老年动物中具有轻度肌病表型。我们检查了与表达天然水平的A17 - PABPN1相关的早期分子和生化表型,检测到这些小鼠的多聚腺苷酸尾巴较短、多聚腺苷酸信号(PAS)使用有适度变化以及线粒体损伤的证据。最近的研究表明,PABPN1功能丧失可能导致OPMD中的肌肉病理变化。为了研究病理变化的功能丧失模型,我们构建了一个杂合的Pabpn1基因敲除小鼠模型(Pabpn1+/Δ)。与Pabpn1+/A17小鼠一样,Pabpn1+/Δ小鼠有轻度组织学缺陷、较短的多聚腺苷酸尾巴以及线粒体损伤的证据。然而,在Pabpn1+/Δ小鼠中检测到的表型仅与在Pabpn1+/A17小鼠中检测到的表型部分重叠。这些结果表明,PABPN1功能丧失可能导致但可能无法完全解释在Pabpn1+/A17小鼠中检测到的病理变化。

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