Pax7, Pax3 and Mamstr genes are involved in skeletal muscle impaired regeneration of dy2J/dy2J mouse model of Lama2-CMD.


Journal

Human molecular genetics
ISSN: 1460-2083
Titre abrégé: Hum Mol Genet
Pays: England
ID NLM: 9208958

Informations de publication

Date de publication:
15 10 2019
Historique:
received: 15 03 2019
revised: 10 07 2019
accepted: 18 07 2019
pubmed: 28 7 2019
medline: 19 5 2020
entrez: 27 7 2019
Statut: ppublish

Résumé

Congenital muscular dystrophy type-1A (Lama2-CMD) and Duchenne muscular dystrophy (DMD) result from deficiencies of laminin-α2 and dystrophin proteins, respectively. Although both proteins strengthen the sarcolemma, they are implicated in clinically distinct phenotypes. We used RNA-deep sequencing (RNA-Seq) of dy2J/dy2J, Lama2-CMD mouse model, skeletal muscle at 8 weeks of age to elucidate disease pathophysiology. This study is the first report of dy2J/dy2J model whole transcriptome profile. RNA-Seq of the mdx mouse model of DMD and wild-type (WT) mouse was carried as well in order to enable a novel comparison of dy2J/dy2J to mdx. A large group of shared differentially expressed genes (DEGs) was found in dy2J/dy2J and mdx models (1834 common DEGs, false discovery rate [FDR] < 0.05). Enrichment pathway analysis using ingenuity pathway analysis showed enrichment of inflammation, fibrosis, cellular movement, migration and proliferation of cells, apoptosis and necrosis in both mouse models (P-values 3E-10-9E-37). Via canonical pathway analysis, actin cytoskeleton, integrin, integrin-linked kinase, NF-kB, renin-angiotensin, epithelial-mesenchymal transition, and calcium signaling were also enriched and upregulated in both models (FDR < 0.05). Interestingly, significant downregulation of Pax7 was detected in dy2J/dy2J compared to upregulation of this key regeneration gene in mdx mice. Pax3 and Mamstr genes were also downregulated in dy2J/dy2J compared to WT mice. These results may explain the distinct disease course and severity in these models. While the mdx model at that stage shows massive regeneration, the dy2J/dy2J shows progressive dystrophic process. Our data deepen our understanding of the molecular pathophysiology and suggest new targets for additional therapies to upregulate regeneration in Lama2-CMD.

Identifiants

pubmed: 31348492
pii: 5538901
doi: 10.1093/hmg/ddz180
doi:

Substances chimiques

PAX3 Transcription Factor 0
PAX7 Transcription Factor 0
Pax7 protein, mouse 0
Pax3 protein, mouse 138016-91-8

Types de publication

Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

3369-3390

Informations de copyright

© The Author(s) 2019. Published by Oxford University Press. All rights reserved. For Permissions, please email: journals.permissions@oup.com.

Auteurs

Nurit Yanay (N)

Felsenstein Medical Research Center, Tel-Aviv University, Tel-Aviv, Israel.
Institute of Neurology, Schneider Children's Medical Center, Tel-Aviv University, Tel-Aviv, Israel.

Moran Elbaz (M)

Pediatric Neuromuscular Laboratory, Hadassah Hebrew University Medical Center, Jerusalem, Israel.

Jenya Konikov-Rozenman (J)

Felsenstein Medical Research Center, Tel-Aviv University, Tel-Aviv, Israel.
Institute of Neurology, Schneider Children's Medical Center, Tel-Aviv University, Tel-Aviv, Israel.

Sharona Elgavish (S)

Info-CORE, I-CORE Bioinformatics Unit, The Hebrew University of Jerusalem and Hadassah Medical Center, Jerusalem, Israel.

Yuval Nevo (Y)

Info-CORE, I-CORE Bioinformatics Unit, The Hebrew University of Jerusalem and Hadassah Medical Center, Jerusalem, Israel.

Yakov Fellig (Y)

Department of Pathology, Hadassah Hebrew University Medical Center, Jerusalem, Israel.

Malcolm Rabie (M)

Felsenstein Medical Research Center, Tel-Aviv University, Tel-Aviv, Israel.
Institute of Neurology, Schneider Children's Medical Center, Tel-Aviv University, Tel-Aviv, Israel.

Stella Mitrani-Rosenbaum (S)

Goldyne Savad Institute of Gene Therapy, Hadassah Hebrew University Medical Center, Jerusalem, Israel.

Yoram Nevo (Y)

Felsenstein Medical Research Center, Tel-Aviv University, Tel-Aviv, Israel.
Institute of Neurology, Schneider Children's Medical Center, Tel-Aviv University, Tel-Aviv, Israel.

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Classifications MeSH