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1.
EMBO J ; 28(16): 2428-36, 2009 Aug 19.
Article in English | MEDLINE | ID: mdl-19644448

ABSTRACT

The localization of genes within the nuclear space is of paramount importance for proper genome functions. However, very little is known on the cis-acting elements determining subnuclear positioning of chromosome segments. We show here that the D4Z4 human subtelomeric repeat localizes a telomere at the nuclear periphery. This perinuclear activity lies within an 80 bp sequence included within a region known to interact with CTCF and A-type Lamins. We further show that a reduced level of either CTCF or A-type Lamins suppresses the perinuclear activities of D4Z4 and that an array of multimerized D4Z4 sequence, which has lost its ability to bind CTCF and A-type Lamins, is not localized at the periphery. Overall, these findings reveal the existence of an 80 bp D4Z4 sequence that is sufficient to position an adjacent telomere to the nuclear periphery in a CTCF and A-type lamins-dependent manner. Strikingly, this sequence includes a 30 bp GA-rich motif, which binds CTCF and is present at several locations in the human genome.


Subject(s)
Lamin Type A/metabolism , Repressor Proteins/metabolism , Telomere/chemistry , Telomere/metabolism , Animals , Base Sequence , Biological Transport , CCCTC-Binding Factor , Carcinoma/genetics , Carcinoma/metabolism , Cell Line, Tumor , Cell Nucleolus/chemistry , Cell Nucleolus/metabolism , Down-Regulation , Epithelial Cells/cytology , Epithelial Cells/metabolism , Female , Humans , Insulator Elements , Locus Control Region , Protein Binding , Repressor Proteins/genetics , Uterine Cervical Neoplasms/genetics , Uterine Cervical Neoplasms/metabolism
2.
PLoS Genet ; 5(2): e1000394, 2009 Feb.
Article in English | MEDLINE | ID: mdl-19247430

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.


Subject(s)
DNA, Satellite , DNA-Binding Proteins/metabolism , Insulator Elements , Lamin Type A/metabolism , Muscular Dystrophy, Facioscapulohumeral/genetics , Repressor Proteins/metabolism , CCCTC-Binding Factor , Cell Line , Chromosome Mapping , Chromosomes, Human, Pair 4/genetics , DNA-Binding Proteins/genetics , Humans , Lamin Type A/genetics , Muscular Dystrophy, Facioscapulohumeral/metabolism , Protein Binding , Repressor Proteins/genetics
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