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SERCA1 protein expression in muscle of patients with Brody disease and Brody syndrome and in cultured human muscle fibers

Authors :
Nicol C. Voermans
Valeria Guglielmi
Elena Pegoraro
Antonio Novelli
C. Scotton
Domenico De Grandis
Bruno Dallapiccola
Alessandra Ferlini
Ernő Zádor
Marcella Neri
Arie Oosterhof
Gaetano Vattemi
Valentina Codemo
Francesca Gualandi
Baziel G.M. van Engelen
Giuliano Tomelleri
Magdolna Kósa
Toin H. van Kuppevelt
Enza Maria Valente
Matteo Marini
Source :
Molecular Genetics and Metabolism, 110, 1-2, pp. 162-9, Molecular Genetics and Metabolism, 110, 162-9
Publication Year :
2013

Abstract

Item does not contain fulltext Brody disease is an inherited myopathy associated with a defective function of sarcoplasmic/endoplasmic reticulum Ca(2+)-ATPase 1 (SERCA1) protein. Mutations in the ATP2A1 gene have been reported only in some patients. Therefore it has been proposed to distinguish patients with ATP2A1 mutations, Brody disease (BD), from patients without mutations, Brody syndrome (BS). We performed a detailed study of SERCA1 protein expression in muscle of patients with BD and BS, and evaluated the alternative splicing of SERCA1 in primary cultures of normal human muscle and in infant muscle. SERCA1 reactivity was observed in type 2 muscle fibers of patients with and without ATP2A1 mutations and staining intensity was similar in patients and controls. Immunoblot analysis showed a significant reduction of SERCA1 band in muscle of BD patients. In addition we demonstrated that the wild type and mutated protein exhibits similar solubility properties and that RIPA buffer improves the recovery of the wild type and mutated SERCA1 protein. We found that SERCA1b, the SERCA1 neonatal form, is the main protein isoform expressed in cultured human muscle fibers and infant muscle. Finally, we identified two novel heterozygous mutations within exon 3 of the ATP2A1 gene from a previously described patient with BD.

Details

Language :
English
ISSN :
10967192
Database :
OpenAIRE
Journal :
Molecular Genetics and Metabolism, 110, 1-2, pp. 162-9, Molecular Genetics and Metabolism, 110, 162-9
Accession number :
edsair.doi.dedup.....f3debcdad1fde90da29ff6a223136a66