Article (Scientific journals)
ASC-1 Is a Cell Cycle Regulator Associated with Severe and Mild Forms of Myopathy.
Villar-Quiles, Rocio N.; Catervi, Fabio; Cabet, Eva et al.
2020In Annals of Neurology, 87 (2), p. 217-232
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Abstract :
[en] OBJECTIVE: Recently, the ASC-1 complex has been identified as a mechanistic link between amyotrophic lateral sclerosis and spinal muscular atrophy (SMA), and 3 mutations of the ASC-1 gene TRIP4 have been associated with SMA or congenital myopathy. Our goal was to define ASC-1 neuromuscular function and the phenotypical spectrum associated with TRIP4 mutations. METHODS: Clinical, molecular, histological, and magnetic resonance imaging studies were made in 5 families with 7 novel TRIP4 mutations. Fluorescence activated cell sorting and Western blot were performed in patient-derived fibroblasts and muscles and in Trip4 knocked-down C2C12 cells. RESULTS: All mutations caused ASC-1 protein depletion. The clinical phenotype was purely myopathic, ranging from lethal neonatal to mild ambulatory adult patients. It included early onset axial and proximal weakness, scoliosis, rigid spine, dysmorphic facies, cutaneous involvement, respiratory failure, and in the older cases, dilated cardiomyopathy. Muscle biopsies showed multiminicores, nemaline rods, cytoplasmic bodies, caps, central nuclei, rimmed fibers, and/or mild endomysial fibrosis. ASC-1 depletion in C2C12 and in patient-derived fibroblasts and muscles caused accelerated proliferation, altered expression of cell cycle proteins, and/or shortening of the G0/G1 cell cycle phase leading to cell size reduction. INTERPRETATION: Our results expand the phenotypical and molecular spectrum of TRIP4-associated disease to include mild adult forms with or without cardiomyopathy, associate ASC-1 depletion with isolated primary muscle involvement, and establish TRIP4 as a causative gene for several congenital muscle diseases, including nemaline, core, centronuclear, and cytoplasmic-body myopathies. They also identify ASC-1 as a novel cell cycle regulator with a key role in cell proliferation, and underline transcriptional coregulation defects as a novel pathophysiological mechanism. ANN NEUROL 2019.
Disciplines :
Neurology
Pediatrics
Author, co-author :
Villar-Quiles, Rocio N.
Catervi, Fabio
Cabet, Eva
Juntas-Morales, Raul
Genetti, Casie A.
Gidaro, Teresa
Koparir, Asuman
Yuksel, Adnan
Coppens, Sandra
Deconinck, Nicolas
Pierce-Hoffman, Emma
Lornage, Xaviere
Durigneux, Julien
Laporte, Jocelyn
Rendu, John
Romero, Norma B.
Beggs, Alan H.
Servais, Laurent ;  Université de Liège - ULiège > Département des sciences cliniques > Département des sciences cliniques
Cossee, Mireille
Olive, Montse
Bohm, Johann
Duband-Goulet, Isabelle
Ferreiro, Ana
More authors (13 more) Less
Language :
English
Title :
ASC-1 Is a Cell Cycle Regulator Associated with Severe and Mild Forms of Myopathy.
Publication date :
January 2020
Journal title :
Annals of Neurology
ISSN :
0364-5134
eISSN :
1531-8249
Publisher :
John Wiley & Sons, Hoboken, United States - New York
Volume :
87
Issue :
2
Pages :
217-232
Peer reviewed :
Peer Reviewed verified by ORBi
Commentary :
(c) 2019 American Neurological Association. Epub 2019 December 27
Available on ORBi :
since 23 January 2020

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