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DUX4转基因小鼠的高频听力损失与多动

High Frequency Hearing Loss and Hyperactivity in DUX4 Transgenic Mice.

作者信息

Dandapat Abhijit, Perrin Benjamin J, Cabelka Christine, Razzoli Maria, Ervasti James M, Bartolomucci Alessandro, Lowe Dawn A, Kyba Michael

机构信息

Lillehei Heart Institute and Department of Pediatrics, University of Minnesota, Minneapolis, 55455, United States of America.

Department of Biochemistry, University of Minnesota, Minneapolis, 55455, United States of America.

出版信息

PLoS One. 2016 Mar 15;11(3):e0151467. doi: 10.1371/journal.pone.0151467. eCollection 2016.

Abstract

Facioscapulohumeral muscular dystrophy (FSHD) is caused by mutations leading to ectopic expression of the transcription factor DUX4, and encompasses both muscle-related and non-muscle phenotypes. Mouse models bearing this gene represent valuable tools to investigate which pathologies are due to DUX4 expression, and how DUX4 leads to these pathologies. The iDUX4(2.7) mouse contains an X-linked doxycycline-inducible DUX4 gene that shows low level basal expression in the absence of doxycycline, leading to male lethality, generally in embryo, but always before 8 weeks of age. Here, we describe additional non-muscle phenotypes in this animal model. We find that iDUX4(2.7) female carriers are extremely hyperactive, spending large amounts of time ambulating and much less time resting. Rare 3-week old males, although hypophagic, runted and extremely fragile, are capable of high activity, but show periods of catatonic torpor in which animals appear dead and respiration is virtually absent. We also examine a non-muscle phenotype of interest to FSHD, high frequency hearing loss. We find that young iDUX4(2.7) females are significantly impaired in their ability to hear at frequencies above 8 kHz. These phenotypes make the iDUX4(2.7) mouse an attractive model in which to study non-muscle activities of DUX4.

摘要

面肩肱型肌营养不良症(FSHD)由导致转录因子DUX4异位表达的突变引起,涵盖肌肉相关和非肌肉表型。携带该基因的小鼠模型是研究哪些病理是由DUX4表达引起的以及DUX4如何导致这些病理的有价值工具。iDUX4(2.7)小鼠含有一个X连锁的强力霉素诱导型DUX4基因,在没有强力霉素的情况下表现出低水平的基础表达,导致雄性致死,通常在胚胎期,但总是在8周龄之前。在此,我们描述了该动物模型中的其他非肌肉表型。我们发现iDUX4(2.7)雌性携带者极度活跃,花费大量时间走动,休息时间少得多。罕见的3周龄雄性,尽管摄食减少、发育不良且极度脆弱,但能够进行高活动,但会出现紧张性木僵期,在此期间动物看起来死亡且几乎没有呼吸。我们还研究了FSHD感兴趣的一种非肌肉表型,即高频听力损失。我们发现年轻的iDUX4(2.7)雌性在8kHz以上频率的听力能力上有显著受损。这些表型使iDUX4(2.7)小鼠成为研究DUX4非肌肉活动的有吸引力的模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b9cd/4792399/5217036f5c5e/pone.0151467.g001.jpg

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