author_facet Tashjian, Tommy F.
Danilowicz, Claudia
Molza, Anne-Elizabeth
Nguyen, Brian H.
Prévost, Chantal
Prentiss, Mara
Godoy, Veronica G.
Tashjian, Tommy F.
Danilowicz, Claudia
Molza, Anne-Elizabeth
Nguyen, Brian H.
Prévost, Chantal
Prentiss, Mara
Godoy, Veronica G.
author Tashjian, Tommy F.
Danilowicz, Claudia
Molza, Anne-Elizabeth
Nguyen, Brian H.
Prévost, Chantal
Prentiss, Mara
Godoy, Veronica G.
spellingShingle Tashjian, Tommy F.
Danilowicz, Claudia
Molza, Anne-Elizabeth
Nguyen, Brian H.
Prévost, Chantal
Prentiss, Mara
Godoy, Veronica G.
Journal of Biological Chemistry
Residues in the fingers domain of the translesion DNA polymerase DinB enable its unique participation in error-prone double-strand break repair
Cell Biology
Molecular Biology
Biochemistry
author_sort tashjian, tommy f.
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title Residues in the fingers domain of the translesion DNA polymerase DinB enable its unique participation in error-prone double-strand break repair
title_unstemmed Residues in the fingers domain of the translesion DNA polymerase DinB enable its unique participation in error-prone double-strand break repair
title_full Residues in the fingers domain of the translesion DNA polymerase DinB enable its unique participation in error-prone double-strand break repair
title_fullStr Residues in the fingers domain of the translesion DNA polymerase DinB enable its unique participation in error-prone double-strand break repair
title_full_unstemmed Residues in the fingers domain of the translesion DNA polymerase DinB enable its unique participation in error-prone double-strand break repair
title_short Residues in the fingers domain of the translesion DNA polymerase DinB enable its unique participation in error-prone double-strand break repair
title_sort residues in the fingers domain of the translesion dna polymerase dinb enable its unique participation in error-prone double-strand break repair
topic Cell Biology
Molecular Biology
Biochemistry
url http://dx.doi.org/10.1074/jbc.ra118.006233
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author Tashjian, Tommy F., Danilowicz, Claudia, Molza, Anne-Elizabeth, Nguyen, Brian H., Prévost, Chantal, Prentiss, Mara, Godoy, Veronica G.
author_facet Tashjian, Tommy F., Danilowicz, Claudia, Molza, Anne-Elizabeth, Nguyen, Brian H., Prévost, Chantal, Prentiss, Mara, Godoy, Veronica G., Tashjian, Tommy F., Danilowicz, Claudia, Molza, Anne-Elizabeth, Nguyen, Brian H., Prévost, Chantal, Prentiss, Mara, Godoy, Veronica G.
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spelling Tashjian, Tommy F. Danilowicz, Claudia Molza, Anne-Elizabeth Nguyen, Brian H. Prévost, Chantal Prentiss, Mara Godoy, Veronica G. 0021-9258 Elsevier BV Cell Biology Molecular Biology Biochemistry http://dx.doi.org/10.1074/jbc.ra118.006233 Residues in the fingers domain of the translesion DNA polymerase DinB enable its unique participation in error-prone double-strand break repair Journal of Biological Chemistry
spellingShingle Tashjian, Tommy F., Danilowicz, Claudia, Molza, Anne-Elizabeth, Nguyen, Brian H., Prévost, Chantal, Prentiss, Mara, Godoy, Veronica G., Journal of Biological Chemistry, Residues in the fingers domain of the translesion DNA polymerase DinB enable its unique participation in error-prone double-strand break repair, Cell Biology, Molecular Biology, Biochemistry
title Residues in the fingers domain of the translesion DNA polymerase DinB enable its unique participation in error-prone double-strand break repair
title_full Residues in the fingers domain of the translesion DNA polymerase DinB enable its unique participation in error-prone double-strand break repair
title_fullStr Residues in the fingers domain of the translesion DNA polymerase DinB enable its unique participation in error-prone double-strand break repair
title_full_unstemmed Residues in the fingers domain of the translesion DNA polymerase DinB enable its unique participation in error-prone double-strand break repair
title_short Residues in the fingers domain of the translesion DNA polymerase DinB enable its unique participation in error-prone double-strand break repair
title_sort residues in the fingers domain of the translesion dna polymerase dinb enable its unique participation in error-prone double-strand break repair
title_unstemmed Residues in the fingers domain of the translesion DNA polymerase DinB enable its unique participation in error-prone double-strand break repair
topic Cell Biology, Molecular Biology, Biochemistry
url http://dx.doi.org/10.1074/jbc.ra118.006233