Differential Analysis of Gly211Val and Gly286Val Mutations Affecting Sarco(endo)plasmic Reticulum Ca2+-ATPase (SERCA1) in Congenital Pseudomyotonia Romagnola Cattle

Congenital pseudomyotonia in cattle (PMT) is a rare skeletal muscle disorder, clinically characterized by stiffness and by delayed muscle relaxation after exercise. Muscle relaxation impairment is due to defective content of the Sarco(endo)plasmic Reticulum Ca2+ ATPase isoform 1 (SERCA1) protein, ca...

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Veröffentlicht in:International journal of molecular sciences 2022-10, Vol.23 (20), p.12364
Hauptverfasser: Akyürek, Eylem Emek, Busato, Francesca, Murgiano, Leonardo, Bianchini, Elisa, Carotti, Marcello, Sandonà, Dorianna, Drögemüller, Cord, Gentile, Arcangelo, Sacchetto, Roberta
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container_issue 20
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container_title International journal of molecular sciences
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creator Akyürek, Eylem Emek
Busato, Francesca
Murgiano, Leonardo
Bianchini, Elisa
Carotti, Marcello
Sandonà, Dorianna
Drögemüller, Cord
Gentile, Arcangelo
Sacchetto, Roberta
description Congenital pseudomyotonia in cattle (PMT) is a rare skeletal muscle disorder, clinically characterized by stiffness and by delayed muscle relaxation after exercise. Muscle relaxation impairment is due to defective content of the Sarco(endo)plasmic Reticulum Ca2+ ATPase isoform 1 (SERCA1) protein, caused by missense mutations in the ATP2A1 gene. PMT represents the only mammalian model of human Brody myopathy. In the Romagnola breed, two missense variants occurring in the same allele were described, leading to Gly211Val and Gly286Val (G211V/G286V) substitutions. In this study, we analyzed the consequences of G211V and G286V mutations. Results support that the reduced amount of SERCA1 is a consequence of the G211V mutation, the G286V mutation almost being benign and the ubiquitin–proteasome system (UPS) being involved. After blocking the proteasome using a proteasome inhibitor, we found that the G211V mutant accumulates in cells at levels comparable to those of WT SERCA1. Our conclusion is that G211/286V mutations presumably originate in a folding-defective SERCA1 protein, recognized and diverted to degradation by UPS, although still catalytically functional, and that the main role is played by G211V mutation. Rescue of mutated SERCA1 to the sarcoplasmic reticulum membrane can re-establish resting cytosolic Ca2+ concentration and prevent the appearance of pathological signs, paving the way for a possible therapeutic approach against Brody disease.
doi_str_mv 10.3390/ijms232012364
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subjects Amino acids
Antibodies
Ca2+-transporting ATPase
Calcium
Calcium ions
Cattle
Investigations
Membranes
Missense mutation
Muscle contraction
Muscles
Musculoskeletal system
Mutagenesis
Mutation
Myopathy
Proteasome inhibitors
Protein expression
Protein folding
Proteins
Sarcoplasmic reticulum
Skeletal muscle
Stiffness
Ubiquitin
title Differential Analysis of Gly211Val and Gly286Val Mutations Affecting Sarco(endo)plasmic Reticulum Ca2+-ATPase (SERCA1) in Congenital Pseudomyotonia Romagnola Cattle
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