Correlation between low FAT1 expression and early affected muscle in facioscapulohumeral muscular dystrophy
ANNALS OF NEUROLOGY
Authors: Mariot, Virginie; Roche, Stephane; Hourde, Christophe; Portilho, Debora; Sacconi, Sabrina; Puppo, Francesca; Duguez, Stephanie; Rameau, Philippe; Caruso, Nathalie; Delezoide, Anne-Lise; Desnuelle, Claude; Bessieres, Bettina; Collardeau, Sophie; Feasson, Leonard; Maisonobe, Thierry; Magdinier, Frederique; Helmbacher, Francoise; Butler-Browne, Gillian; Mouly, Vincent; Dumonceaux, Julie
Abstract
ObjectiveFacioscapulohumeral muscular dystrophy (FSHD) is linked to either contraction of D4Z4 repeats on chromosome 4 or to mutations in the SMCHD1 gene, both of which result in the aberrant expression of the transcription factor DUX4. However, it is still difficult to correlate these genotypes with the phenotypes observed in patients. Because we have recently shown that mice with disrupted Fat1 functions exhibit FSHD-like phenotypes, we have investigated the expression of the human FAT1 gene in FSHD. MethodsWe first analyzed FAT1 expression in FSHD adult muscles and determined whether FAT1 expression was driven by DUX4. We next determined FAT1 expression levels in 64 muscles isolated from 16 control fetuses. These data were further complemented with analysis of Fat1 expression in developing mouse embryos. ResultsWe demonstrated that FAT1 expression is independent of DUX4. Moreover, we observed that (1) in control fetal human biopsies or in developing mouse embryos, FAT1 is expressed at lower levels in muscles that are affected at early stages of FSHD progression than in muscles that are affected later or are nonaffected; and (2) in adult muscle biopsies, FAT1 expression is lower in FSHD muscles compared to control muscles. InterpretationWe propose a revised model for FSHD in which FAT1 levels might play a role in determining which muscles will exhibit early and late disease onset, whereas DUX4 may worsen the muscle phenotype. Ann Neurol 2015;78:387-400
Digenic inheritance of an SMCHD1 mutation and an FSHD-permissive D4Z4 allele causes facioscapulohumeral muscular dystrophy type 2
NATURE GENETICS
Authors: Lemmers, Richard J. L. F.; Tawil, Rabi; Petek, Lisa M.; Balog, Judit; Block, Gregory J.; Santen, Gijs W. E.; Amell, Amanda M.; van der Vliet, Patrick J.; Almomani, Rowida; Straasheijm, Kirsten R.; Krom, Yvonne D.; Klooster, Rinse; Sun, Yu; den Dunnen, Johan T.; Helmer, Quinta; Donlin-Smith, Colleen M.; Padberg, George W.; van Engelen, Baziel G. M.; de Greef, Jessica C.; Aartsma-Rus, Annemieke M.; Frants, Rune R.; de Visser, Marianne; Desnuelle, Claude; Sacconi, Sabrina; Filippova, Galina N.; Bakker, Bert; Bamshad, Michael J.; Tapscott, Stephen J.; Miller, Daniel G.; van der Maarel, Silvere M.
Abstract
Facioscapulohumeral dystrophy (FSHD) is characterized by chromatin relaxation of the D4Z4 macrosatellite array on chromosome 4 and expression of the D4Z4-encoded DUX4 gene in skeletal muscle. The more common form, autosomal dominant FSHD1, is caused by contraction of the D4Z4 array, whereas the genetic determinants and inheritance of D4Z4 array contraction-independent FSHD2 are unclear. Here, we show that mutations in SMCHD1 (encoding structural maintenance of chromosomes flexible hinge domain containing 1) on chromosome 18 reduce SMCHD1 protein levels and segregate with genome-wide D4Z4 CpG hypomethylation in human kindreds. FSHD2 occurs in individuals who inherited both the SMCHD1 mutation and a normal-sized D4Z4 array on a chromosome 4 haplotype permissive for DUX4 expression. Reducing SMCHD1 levels in skeletal muscle results in D4Z4 contraction-independent DUX4 expression. Our study identifies SMCHD1 as an epigenetic modifier of the D4Z4 metastable epiallele and as a causal genetic determinant of FSHD2 and possibly other human diseases subject to epigenetic regulation.