| Literature DB >> 30844655 |
Wenjun Liu1, Guanying Wang1, Anna Palovcak1, Yan Li2, Sophie Hao1, Zhao-Jun Liu3, Ralf Landgraf3, Fenghua Yuan4, Yanbin Zhang5.
Abstract
FANCA is a key player in the canonical Fanconi anemia (FA) repair pathway. We have recently shown that FANCA also plays an important role in the single-strand annealing sub-pathway (SSA) of DNA double-strand break (DSB) repair by biochemically catalyzing single-strand annealing. Here, we report that a steroidal lactone withaferin A (WA) specifically impedes SSA repair by promoting FANCA downregulation at a sub-micromolar concentration range. We find that WA causes FANCA downregulation post-translationally in a proteasome-dependent manner. This WA-mediated downregulation is achieved through HSP90 inhibition and disruption of the FANCA-HSP90 interaction. WA-mediated FANCA degradation significantly reduces cellular SSA repair, abolishes FANCD2 monoubiquitination, elevates sensitivity to mitomycin C, and results in accumulation of DSBs. Importantly, the WA-induced defect in SSA repair is highly dependent on the absence of FANCA protein and overexpression of exogenous WT-FANCA protein in WA-treated cells significantly complements the repair defect.Entities:
Keywords: Double strand break repair; FANCA; Fanconi anemia; Single strand annealing
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Year: 2019 PMID: 30844655 PMCID: PMC6476309 DOI: 10.1016/j.dnarep.2019.02.010
Source DB: PubMed Journal: DNA Repair (Amst) ISSN: 1568-7856