Taking advantage of an old concept, "illegitimate transcription", for a proposed novel method of genetic diagnosis of McArdle disease


Autoria(s): García-Consuegra, Inés; Blázquez, Alberto; Rubio, Juan Carlos; Arenas, Joaquín; Ballester López, Alfonsina; González Quintana, Adrián; Andreu, Antoni L.; Pinós, Tomás; Coll Cantí, Jaume; Lucía Mulas, Alejandro; Nogales-Gadea, Gisela; Martín, Miguel Ángel
Data(s)

08/03/2016

08/03/2016

2016

Resumo

McArdle disease is a metabolic disorder caused by pathogenic mutations in the PYGM gene. Timely diagnosis can sometimes be difficult with direct genomic analysis, which requires additional studies of cDNA from muscle transcripts. Although the "nonsense-mediated mRNA decay" (NMD) eliminates tissue-specific aberrant transcripts, there is some residual transcription of tissue-specific genes in virtually all cells, such as peripheral blood mononuclear cells (PBMCs).We studied a subset of the main types of PYGM mutations (deletions, missense, nonsense, silent, or splicing mutations) in cDNA from easily accessible cells (PBMCs) in 12 McArdle patients.Analysis of cDNA from PBMCs allowed detection of all mutations. Importantly, the effects of mutations with unknown pathogenicity (silent and splicing mutations) were characterized in PBMCs. Because the NMD mechanism does not seem to operate in nonspecific cells, PBMCs were more suitable than muscle biopsies for detecting the pathogenicity of some PYGM mutations, notably the silent mutation c.645G>A (p.K215=), whose effect in the splicing of intron 6 was unnoticed in previous muscle transcriptomic studies.We propose considering the use of PBMCs for detecting mutations that are thought to cause McArdle disease, particularly for studying their actual pathogenicity.

SIN FINANCIACIÓN

7.710 JCR (2015) Q1, 13/165 Genetics & heredity

UEM

Identificador

Garcia-Consuegra, I., Blázquez, A., Rubio, J. C., Arenas, J., Ballester-Lopez, A., González-Quintana, A., ... & Nogales-Gadea, G. (2016). Taking advantage of an old concept,[ldquo] illegitimate transcription [rdquo], for a proposed novel method of genetic diagnosis of McArdle disease. Genetics in Medicine, 18(11),1128-1135. DOI: 10.1038/gim.2015.219

10983600

http://hdl.handle.net/11268/5014

10.1038/gim.2015.219

Idioma(s)

eng

Direitos

openAccess

Palavras-Chave #McArdle disease #PYGM mutations #Genética humana #Salud #Genética humana #Salud
Tipo

article