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Cis-acting DNA sequence at a replication origin promotes repeat expansion to fragile X full mutation.


ABSTRACT: Fragile X syndrome (FXS) is caused by CGG repeat expansion that leads to FMR1 silencing. Women with a premutation allele are at risk of having a full mutation child with FXS. To investigate the mechanism of repeat expansion, we examined the relationship between a single-nucleotide polymorphism (SNP) variant that is linked to repeat expansion in haplogroup D and a replication origin located ?53 kb upstream of the repeats. This origin is absent in FXS human embryonic stem cells (hESCs), which have the SNP variant C, but present in the nonaffected hESCs, which have a T variant. The SNP maps directly within the replication origin. Interestingly, premutation hESCs have a replication origin and the T variant similar to nonaffected hESCs. These results suggest that a T/C SNP located at a replication origin could contribute to the inactivation of this replication origin in FXS hESCs, leading to altered replication fork progression through the repeats, which could result in repeat expansion to the FXS full mutation.

SUBMITTER: Gerhardt J 

PROVIDER: S-EPMC4151148 | biostudies-literature | 2014 Sep

REPOSITORIES: biostudies-literature

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Cis-acting DNA sequence at a replication origin promotes repeat expansion to fragile X full mutation.

Gerhardt Jeannine J   Zaninovic Nikica N   Zhan Qiansheng Q   Madireddy Advaitha A   Nolin Sarah L SL   Ersalesi Nicole N   Yan Zi Z   Rosenwaks Zev Z   Schildkraut Carl L CL  

The Journal of cell biology 20140901 5


Fragile X syndrome (FXS) is caused by CGG repeat expansion that leads to FMR1 silencing. Women with a premutation allele are at risk of having a full mutation child with FXS. To investigate the mechanism of repeat expansion, we examined the relationship between a single-nucleotide polymorphism (SNP) variant that is linked to repeat expansion in haplogroup D and a replication origin located ∼53 kb upstream of the repeats. This origin is absent in FXS human embryonic stem cells (hESCs), which have  ...[more]

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