DUX4c Is Up-Regulated in FSHD. It Induces the MYF5 Protein and Human Myoblast Proliferation

被引:49
作者
Ansseau, Eugenie
Laoudj-Chenivesse, Dalila
Marcowycz, Aline
Tassin, Alexandra
Vanderplanck, Celine
Sauvage, Sebastien
Barro, Marietta
Mahieu, Isabelle
Leroy, Axelle
Leclercq, India
Mainfroid, Veronique
Figlewicz, Denise
Mouly, Vincent
Butler-Browne, Gillian
Belayew, Alexandra
Coppee, Frederique
机构
[1] Laboratory of Molecular Biology, University of Mons-Hainaut, 6, Mons
[2] INSERM ERI 25 Muscle et Pathologies, CHU A. de Villeneuve, Montpellier
[3] Eppendorf Array Technologies, Namur
[4] Department of Neurology, University of Michigan, Ann Arbor, MI
[5] Institute of Myology, Platform for human cell culture, Paris
来源
PLOS ONE | 2009年 / 4卷 / 10期
关键词
FACIOSCAPULOHUMERAL MUSCULAR-DYSTROPHY; 4Q35; LOCUS; GENE-EXPRESSION; CANDIDATE GENE; D4Z4; REGION; MUSCLE; REPEAT; DNA; EVOLUTION;
D O I
10.1371/journal.pone.0007482
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Facioscapulohumeral muscular dystrophy (FSHD) is a dominant disease linked to contractions of the D4Z4 repeat array in 4q35. We have previously identified a double homeobox gene (DUX4) within each D4Z4 unit that encodes a transcription factor expressed in FSHD but not control myoblasts. DUX4 and its target genes contribute to the global dysregulation of gene expression observed in FSHD. We have now characterized the homologous DUX4c gene mapped 42 kb centromeric of the D4Z4 repeat array. It encodes a 47-kDa protein with a double homeodomain identical to DUX4 but divergent in the carboxyl-terminal region. DUX4c was detected in primary myoblast extracts by Western blot with a specific antiserum, and was induced upon differentiation. The protein was increased about 2-fold in FSHD versus control myotubes but reached 2-10-fold induction in FSHD muscle biopsies. We have shown by Western blot and by a DNA-binding assay that DUX4c overexpression induced the MYF5 myogenic regulator and its DNA-binding activity. DUX4c might stabilize the MYF5 protein as we detected their interaction by co-immunoprecipitation. In keeping with the known role of Myf5 in myoblast accumulation during mouse muscle regeneration DUX4c over-expression activated proliferation of human primary myoblasts and inhibited their differentiation. Altogether, these results suggested that DUX4c could be involved in muscle regeneration and that changes in its expression could contribute to the FSHD pathology.
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页数:11
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