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Loss of FHL1 induces an age-dependent skeletal muscle myopathy associated with myofibrillar and intermyofibrillar disorganization in mice

  • Andrea A. Domenighetti
  • , Pao Hsien Chu
  • , Tongbin Wu
  • , Farah Sheikh
  • , David S. Gokhin
  • , Ling T. Guo
  • , Ziyou Cui
  • , Angela K. Peter
  • , Danos C. Christodoulou
  • , Michael G. Parfenov
  • , Joshua M. Gorham
  • , Daniel Y. Li
  • , Indroneal Banerjee
  • , Xianyin Lai
  • , Frank A. Witzmann
  • , Christine E. Seidman
  • , Jonathan G. Seidman
  • , Aldrin V. Gomes
  • , G. Diane Shelton
  • , Richard L. Lieber
  • Ju Chen*
*此作品的通信作者
  • University of California at San Diego
  • Chang Gung University
  • Chang Gung Memorial Hospital
  • Scripps Research Institute
  • University of California at Davis
  • Harvard University
  • Indiana University Bloomington

研究成果: 期刊稿件文章同行評審

48 引文 斯高帕斯(Scopus)

摘要

Recent human genetic studies have provided evidences that sporadic or inherited missense mutations in fourand- a-half LIM domain protein 1 (FHL1), resulting in alterations in FHL1 protein expression, are associated with rare congenital myopathies, including reducing bodymyopathy and Emery-Dreifuss muscular dystrophy. However, itremains tobe clarifiedwhethermutationsinFHL1 cause skeletalmuscleremodelingowingto gain- or loss of FHL1 function. In this study, we used FHL1-null mice lacking global FHL1 expression to evaluate loss-offunction effects on skeletalmuscle homeostasis. Histological and functional analyses of soleus, tibialis anterior andsternohyoideusmusclesdemonstratedthatFHL1-nullmicedevelopanage-dependentmyopathyassociated with myofibrillar and intermyofibrillar (mitochondrial and sarcoplasmic reticulum) disorganization, impaired muscle oxidative capacity and increased autophagic activity. A longitudinal study established decreased survival rates inFHL1-nullmice,associatedwithage-dependentimpairmentofmusclecontractile functionanda significantly lower exercise capacity.Analysis of primarymyoblasts isolated fromFHL1-nullmusclesdemonstrated early muscle fiber differentiation and maturation defects,which could be rescued by re-expression of the FHL1A isoform, highlighting that FHL1A is necessary for proper muscle fiber differentiation and maturation in vitro. Overall, our data show that loss of FHL1 function leads to myopathy in vivo and suggest that loss of function of FHL1 may be one of the mechanisms underlying muscle dystrophy in patients with FHL1 mutations.

原文英語
文章編號ddt412
頁(從 - 到)209-225
頁數17
期刊Human Molecular Genetics
23
發行號1
DOIs
出版狀態已出版 - 01 2014
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