The D4Z4 Macrosatellite Repeat Acts as a CTCF and A-Type Lamins-Dependent Insulator in Facio-Scapulo-Humeral Dystrophy

Alexandre Ottaviani(Laboratoire de Biologie et Modélisation de la Cellule), Sylvie Rival‐Gervier(École Nationale Vétérinaire d'Alfort), Amina Boussouar(École Normale Supérieure de Lyon), Andrea M. Foerster(École Normale Supérieure de Lyon), Delphine Rondier(Université Claude Bernard Lyon 1), Sabrina Sacconi(Centre Hospitalier Universitaire de Nice), Claude Desnuelle(Centre Hospitalier Universitaire de Nice), Éric Gilson(École Normale Supérieure de Lyon), Frédérique Magdinier(Université Claude Bernard Lyon 1)
PLoS Genetics
February 26, 2009
Cited by 117Open Access
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Abstract

Both genetic and epigenetic alterations contribute to Facio-Scapulo-Humeral Dystrophy (FSHD), which is linked to the shortening of the array of D4Z4 repeats at the 4q35 locus. The consequence of this rearrangement remains enigmatic, but deletion of this 3.3-kb macrosatellite element might affect the expression of the FSHD-associated gene(s) through position effect mechanisms. We investigated this hypothesis by creating a large collection of constructs carrying 1 to >11 D4Z4 repeats integrated into the human genome, either at random sites or proximal to a telomere, mimicking thereby the organization of the 4q35 locus. We show that D4Z4 acts as an insulator that interferes with enhancer-promoter communication and protects transgenes from position effect. This last property depends on both CTCF and A-type Lamins. We further demonstrate that both anti-silencing activity of D4Z4 and CTCF binding are lost upon multimerization of the repeat in cells from FSHD patients compared to control myoblasts from healthy individuals, suggesting that FSHD corresponds to a gain-of-function of CTCF at the residual D4Z4 repeats. We propose that contraction of the D4Z4 array contributes to FSHD physio-pathology by acting as a CTCF-dependent insulator in patients.


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