Tissue- and cell-specific whole-transcriptome meta-analysis from brain and retina reveals differential expression of dystrophin complexes and new dystrophin spliced isoforms

Author:

García-Cruz César12,Aragón Jorge1,Lourdel Sophie2,Annan Ahrmad2,Roger Jérôme E23,Montanez Cecilia1,Vaillend Cyrille2ORCID

Affiliation:

1. Departamento de Genética y Biología Molecular, Centro de Investigación y de Estudios Avanzados del IPN , 07360 Ciudad de México , Mexico

2. Institut des Neurosciences Paris Saclay, Université Paris-Saclay, CNRS , 91400 Saclay , France

3. CERTO-Retina France , 91400 Saclay , France

Abstract

Abstract The large DMD gene encodes a group of dystrophin proteins in brain and retina, produced from multiple promoters and alternative splicing events. Dystrophins are core components of different scaffolding complexes in distinct cell types. Their absence may thus alter several cellular pathways, which might explain the heterogeneous genotype–phenotype relationships underlying central comorbidities in Duchenne muscular dystrophy (DMD). However, the cell-specific expression of dystrophins and associated proteins (DAPs) is still largely unknown. The present study provides a first RNA-Seq-based reference showing tissue- and cell-specific differential expression of dystrophins, splice variants and DAPs in mouse brain and retina. We report that a cell type may express several dystrophin complexes, perhaps due to expression in separate cell subdomains and/or subpopulations, some of which with differential expression at different maturation stages. We also identified new splicing events in addition to the common exon-skipping events. These include a new exon within intron 51 (E51b) in frame with the flanking exons in retina, as well as inclusions of intronic sequences with stop codons leading to the presence of transcripts with elongated exons 40 and/or 41 (E40e, E41e) in both retina and brain. PCR validations revealed that the new exons may affect several dystrophins. Moreover, immunoblot experiments using a combination of specific antibodies and dystrophin-deficient mice unveiled that the transcripts with stop codons are translated into truncated proteins lacking their C-terminus, which we called N-Dp427 and N-Dp260. This study thus uncovers a range of new findings underlying the complex neurobiology of DMD.

Funder

Centre National de la Recherche Scientifique

France-Mexico collaborative research

Consejo Nacional de Ciencia y Tecnología, Guatemala

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology,General Medicine

Reference69 articles.

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3. Neurodevelopmental, emotional, and behavioural problems in Duchenne muscular dystrophy in relation to underlying dystrophin gene mutations;Ricotti;Dev. Med. Child Neurol.,2016

4. Ocular and neurodevelopmental features of Duchenne muscular dystrophy: a signature of dystrophin function in the central nervous system;Ricotti;Eur. J. Hum. Genet.,2016

5. Schwann cell-specific Dp116 is expressed in glioblastoma cells, revealing two novel DMD gene splicing patterns;Rani;Biochem. Biophys. Rep.,2019

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