000 01438 a2200373 4500
005 20250516214900.0
264 0 _c20141006
008 201410s 0 0 eng d
022 _a1083-351X
024 7 _a10.1074/jbc.M114.571588
_2doi
040 _aNLM
_beng
_cNLM
100 1 _aCannan, Wendy J
245 0 0 _aNucleosomes suppress the formation of double-strand DNA breaks during attempted base excision repair of clustered oxidative damages.
_h[electronic resource]
260 _bThe Journal of biological chemistry
_cJul 2014
300 _a19881-93 p.
_bdigital
500 _aPublication Type: Journal Article; Research Support, N.I.H., Extramural; Research Support, U.S. Gov't, Non-P.H.S.
650 0 4 _aChromatin
_xchemistry
650 0 4 _aDNA
_xchemistry
650 0 4 _aDNA Breaks, Double-Stranded
650 0 4 _aDNA Damage
650 0 4 _aDNA Glycosylases
_xmetabolism
650 0 4 _aDNA Repair
_xphysiology
650 0 4 _aDeoxyribonuclease (Pyrimidine Dimer)
_xmetabolism
650 0 4 _aHumans
650 0 4 _aModels, Molecular
650 0 4 _aNucleic Acid Conformation
650 0 4 _aNucleosomes
_xmetabolism
650 0 4 _aOxidation-Reduction
700 1 _aTsang, Betty P
700 1 _aWallace, Susan S
700 1 _aPederson, David S
773 0 _tThe Journal of biological chemistry
_gvol. 289
_gno. 29
_gp. 19881-93
856 4 0 _uhttps://doi.org/10.1074/jbc.M114.571588
_zAvailable from publisher's website
999 _c23882717
_d23882717