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 PMID:26637282  

FANCJ suppresses microsatellite instability and lymphomagenesis independent of the Fanconi anemia pathway.

Kenichiro Matsuzaki | Valerie Borel | Carrie A Adelman | Detlev Schindler | Simon J Boulton
Genes & development | 2015

Microsatellites are short tandem repeat sequences that are highly prone to expansion/contraction due to their propensity to form non-B-form DNA structures, which hinder DNA polymerases and provoke template slippage. Although error correction by mismatch repair plays a key role in preventing microsatellite instability (MSI), which is a hallmark of Lynch syndrome, activities must also exist that unwind secondary structures to facilitate replication fidelity. Here, we report that Fancj helicase-deficient mice, while phenotypically resembling Fanconi anemia (FA), are also hypersensitive to replication inhibitors and predisposed to lymphoma. Whereas metabolism of G4-DNA structures is largely unaffected in Fancj(-/-) mice, high levels of spontaneous MSI occur, which is exacerbated by replication inhibition. In contrast, MSI is not observed in Fancd2(-/-) mice but is prevalent in human FA-J patients. Together, these data implicate FANCJ as a key factor required to counteract MSI, which is functionally distinct from its role in the FA pathway.

Pubmed ID: 26637282

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Associated grants

  • Agency: Wellcome Trust, United Kingdom
  • Agency: Wellcome Trust, United Kingdom
    Id: 104558

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U2OS (tool)

RRID:CVCL_0042

Cell line U2OS is a Cancer cell line with a species of origin Homo sapiens (Human)

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