TY - JOUR
T1 - Novel ACTA1 mutation causes late-presenting nemaline myopathy with unusual dark cores
AU - Garibaldi, Matteo
AU - Fattori, Fabiana
AU - Pennisi, Elena Maria
AU - Merlonghi, Gioia
AU - Fionda, Laura
AU - Vanoli, Fiammetta
AU - Leonardi, Luca
AU - Bucci, Elisabetta
AU - Morino, Stefania
AU - Micaloni, Andrea
AU - Tartaglione, Tommaso
AU - Uijterwijk, Bas
AU - Zierikzee, Martijn
AU - Ottenheijm, Coen
AU - Bertini, Enrico Silvio
AU - Stoppacciaro, Antonella
AU - Raffa, Salvatore
AU - Salvetti, Marco
AU - Antonini, Giovanni
N1 - Publisher Copyright:
© 2020 Elsevier B.V.
Copyright:
Copyright 2021 Elsevier B.V., All rights reserved.
PY - 2021/2
Y1 - 2021/2
N2 - ACTA1 gene encodes the skeletal muscle alpha-actin, the core of thin filaments of the sarcomere. ACTA1 mutations are responsible of several muscle disorders including nemaline, cores, actin aggregate myopathies and fiber-type disproportion. We report clinical, muscle imaging, histopatological and genetic data of an Italian family carrying a novel ACTA1 mutation. All affected members showed a late-presenting, diffuse muscle weakness with sternocleidomastoideus and temporalis atrophy. Mild dysmorphic features were also detected. The most affected muscles by muscle MRI were rectus abdominis, gluteus minimus, vastus intermedius and both gastrocnemii. Muscle biopsy showed the presence of nemaline bodies with several unusual dark areas at Gomori Trichrome, corresponding to unstructured cores with abundant electrodense material by electron microscopy. The molecular analysis revealed missense variant c.148G>A; p.(Gly50Ser) in the exon 3 of ACTA1, segregating with affected members in the family. We performed a functional essay of fibre contractility showing a higher pCa50 (a measure of the calcium sensitivity of force) of type 1 fibers compared to control subjects’ type 1 muscle fibers. Our findings expand the clinico-pathological spectrum of ACTA1-related congenital myopathies and the genetic spectrum of core-rod myopathies.
AB - ACTA1 gene encodes the skeletal muscle alpha-actin, the core of thin filaments of the sarcomere. ACTA1 mutations are responsible of several muscle disorders including nemaline, cores, actin aggregate myopathies and fiber-type disproportion. We report clinical, muscle imaging, histopatological and genetic data of an Italian family carrying a novel ACTA1 mutation. All affected members showed a late-presenting, diffuse muscle weakness with sternocleidomastoideus and temporalis atrophy. Mild dysmorphic features were also detected. The most affected muscles by muscle MRI were rectus abdominis, gluteus minimus, vastus intermedius and both gastrocnemii. Muscle biopsy showed the presence of nemaline bodies with several unusual dark areas at Gomori Trichrome, corresponding to unstructured cores with abundant electrodense material by electron microscopy. The molecular analysis revealed missense variant c.148G>A; p.(Gly50Ser) in the exon 3 of ACTA1, segregating with affected members in the family. We performed a functional essay of fibre contractility showing a higher pCa50 (a measure of the calcium sensitivity of force) of type 1 fibers compared to control subjects’ type 1 muscle fibers. Our findings expand the clinico-pathological spectrum of ACTA1-related congenital myopathies and the genetic spectrum of core-rod myopathies.
KW - Acta1
KW - Central core
KW - Central core disease
KW - Congenital myopathy
KW - Core-rod myopathy
KW - Nemaline myopathy
UR - http://www.scopus.com/inward/record.url?scp=85098620572&partnerID=8YFLogxK
U2 - 10.1016/j.nmd.2020.11.012
DO - 10.1016/j.nmd.2020.11.012
M3 - Article
C2 - 33384202
VL - 31
SP - 139
EP - 148
JO - Neuromuscular Disorders
JF - Neuromuscular Disorders
SN - 0960-8966
IS - 2
ER -