Muscle genome-wide expression profiling during disease evolution in mdx mice

被引:48
作者
Marotta, Mario [1 ]
Ruiz-Roig, Claudia [1 ]
Sarria, Yaris [1 ]
Peiro, Jose Luis [2 ]
Nunez, Fatima [3 ]
Ceron, Julian [4 ]
Munell, Francina [5 ]
Roig-Quilis, Manuel [1 ,6 ]
机构
[1] Hosp Univ Vall Hebron, Inst Recerca, Lab Neurol Infantil, Barcelona 08035, Spain
[2] Hosp Univ Vall Hebron, Unitat Cirurgia Fetal & Neonatal, Dept Cirurgia Pediat, Barcelona 08035, Spain
[3] Hosp Univ Vall Hebron, UCTS, Inst Recerca, Barcelona 08035, Spain
[4] Hosp Univ Vall Hebron, Genet & Funct Genom Grp, Mol Biol & Biochem Res Ctr Nanomed CIBBIM, Barcelona 08035, Spain
[5] Hosp Univ Vall Hebron, Inst Recerca, Unitat Recerca Biomed, Barcelona 08035, Spain
[6] Hosp Univ Vall Hebron, Hosp Materno Infantil, Seccio Neurol Infantil, Barcelona 08035, Spain
关键词
skeletal muscle; microarrays; temporal gene expression analysis; gene functional networks; DUCHENNE MUSCULAR-DYSTROPHY; F-ACTIN-BINDING; SKELETAL-MUSCLE; GENE-EXPRESSION; HINDLIMB MUSCLES; EXTRAOCULAR-MUSCLE; LIM PROTEIN; EXTRACELLULAR-MATRIX; LACKING UTROPHIN; CELL-ADHESION;
D O I
10.1152/physiolgenomics.90370.2008
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Marotta M, Ruiz-Roig C, Sarria Y, Peiro JL, Nunez F, Ceron J, Munell F, Roig-Quilis M. Muscle genome-wide expression profiling during disease evolution in mdx mice. Physiol Genomics 37: 119-132, 2009. First published February 17, 2009; doi:10.1152/physiolgenomics.90370.2008.-Mdx mice show a milder phenotype than Duchenne patients despite bearing an analogous genetic defect. Our aim was to sort out genes, differentially expressed during the evolution of skeletal muscle mdx mouse disease, to elucidate the mechanisms by which these animals overcome the lack of dystrophin. Genome-wide microarray-based gene expression analysis was carried out at 3 wk and 1.5 and 3 mo of life. Candidate genes were selected by comparing: 1) mdx vs. controls at each point in time, and 2) mdx mice and 3) control mice among the three points in time. The first analysis showed a strong upregulation (96%) of inflammation-related genes and in > 75% of genes related to cell adhesion, muscle structure/regeneration, and extracellular matrix remodeling during mdx disease evolution. Lgals3, Postn, Ctss, and Sln genes showed the strongest variations. The analysis performed among points in time demonstrated significant changes in Ecm1, Spon1, Thbs1, Csrp3, Myo10, Pde4b, and Adamts-5 exclusively during mdx mice lifespan. RT-PCR analysis of Postn, Sln, Ctss, Thbs1, Ecm1, and Adamts-5 expression from 3 wk to 9 mo, confirmed microarray data and demonstrated variations beyond 3 mo of age. A high-confidence functional network analysis demonstrated a strong relationship between them and showed two main subnetworks, having Dmd-Utrn-Myo10 and Adamts5-Thbs1-Spon1-Postn as principal nodes, which are functionally linked to Abca1, Actn4, Crebbp, Csrp3, Lama1, Lama3, Mical2, Mical3, Myf6, Pxn, and Sparc genes. Candidate genes may participate in the decline of muscle necrosis in mdx mice and could be considered potential therapeutic targets for Duchenne patients.
引用
收藏
页码:119 / 132
页数:14
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