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Novel molecular diagnostic approaches for X-linked centronuclear (myotubular) myopathy reveal intronic mutations

Authors :
Denis Oriot
Christine Kretz
Carsten G. Bönnemann
Nicolas Dondaine
Valérie Tosch
Nasim Vasli
Norma B. Romero
Anne-Sophie Nicot
Jocelyn Laporte
Gilles Duval
Valérie Biancalana
Claire Gasnier
Magalie Barth
Hugues Puissant
Betty Heller
Source :
Neuromuscular Disorders. 20:375-381
Publication Year :
2010
Publisher :
Elsevier BV, 2010.

Abstract

X-linked centronuclear myopathy (XLMTM), also called myotubular myopathy, is a severe congenital myopathy characterized by generalized hypotonia and weakness at birth and the typical histological finding of centralization of myo-nuclei. It is caused by mutations in the MTM1 gene encoding the 3-phosphoinositides phosphatase myotubularin. Mutations in dynamin 2 and amphiphysin 2 genes lead to autosomal forms of centronuclear myopathy (CNM). While XLMTM is the most frequent and severe form of CNM, no mutations are found in about 30% of patients by sequencing all MTM1 exons. Moreover, the impact of MTM1 sequence variants is sometimes difficult to assess. It is thus important to devise a complete molecular diagnostic strategy that includes analysis of the myotubularin transcript and protein expression. We therefore developed novel antibodies against human myotubularin and showed that they are able to detect the endogenous protein by direct Western blot from muscle samples and from cultured cells. In conjunction with RT-PCR analysis we validated the consequences of missense and splice mutations on transcript integrity and protein level. We also detected and characterized a novel deep intronic mutation consisting of a single nucleotide change that induces exonisation of a conserved intronic sequence. Patients with centronuclear myopathy and no molecular diagnosis should be investigated for MTM1 defects at the cDNA and protein level.

Details

ISSN :
09608966
Volume :
20
Database :
OpenAIRE
Journal :
Neuromuscular Disorders
Accession number :
edsair.doi.dedup.....6d47e0534be7027c37fddb5b6c80f7d0
Full Text :
https://doi.org/10.1016/j.nmd.2010.03.015