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1 FANCE, a subunit of the FA core complex, plays an essent
2 NCE (FANCE-T346A/S374A), when expressed in a FANCE-deficient cell line, allows FANCD2 monoubiquitinat
5 gnaling, leading to defective Chk1, p53, and FANCE phosphorylation; 53BP1 focus formation; and Cdc25A
6 ecause FANCE and FANCC interact in vitro and FANCE is required for FANCD2 monoubiquitination, we reas
7 FANCE-deficient cells to a similar degree as FANCE null cells, suggesting the significance of the FAN
9 a genes include FANCD2, FANCA, FANCG, ERCC4, FANCE and FANCI, while DNA mismatch repair genes MSH3 an
11 ia-associated proteins (FANCA, FANCB, FANCC, FANCE, FANCF, FANCG and FANCL) form a nuclear Fanconi an
12 d with Fanconi anemia (FANCA, FANCC, FANCD2, FANCE, FANCF and FANCG) as well as BRCA1 and BRCA2 (FANC
13 anemia gene products (FANCA, FANCC, FANCD2, FANCE, FANCF, and FANCG proteins) interact in a common p
15 genes (FANCA, FANCB, FANCC, FANCD1, FANCD2, FANCE, FANCF, FANCG, and FANCL), and identified ortholog
16 groups (FANCA, FANCB, FANCC, FANCD1, FANCD2, FANCE, FANCF, FANCG, FANCI, FANCJ, FANCL, FANCM, and FAN
17 A nonphosphorylated mutant form of FANCE (FANCE-T346A/S374A), when expressed in a FANCE-deficient
19 hese findings show that the newly identified FANCE protein is an integral part of the FA pathway, and
20 Here we show that the recently identified FANCE protein is part of this nuclear complex, binding b
28 ferred cellular sensitivity in reconstituted FANCE-deficient cells to a similar degree as FANCE null
34 Disease-associated mutations disrupt the FANCE-FANCD2 interaction, providing structural insight i
35 FANCE mutant that specifically disrupts the FANCE-FANCD2 interaction as a tool, we found that the in
37 ll cells, suggesting the significance of the FANCE-FANCD2 interaction in promoting cisplatin resistan
38 repair, consolidating the importance of the FANCE-FANCD2 interaction in the DNA cross-link repair.
39 DNA damage, Chk1 directly phosphorylates the FANCE subunit of the FA core complex on two conserved si
41 nconi anemia subtype E (FA-E) cells with the FANCE cDNA restores the nuclear accumulation of FANCC pr
42 ease-associated FANCC mutants do not bind to FANCE, cannot accumulate in the nucleus and are unable t
43 teraction of FANCF with FANCG, of FANCC with FANCE and a weaker interaction of FANCE with both FANCA