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Katherine A Donigan

Showing results (1-10 of 13) with videos related to

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Molecular Carcinogenesis|March 24, 2009
Sequence context-specific mutagenesis and base excision repairKatherine A Donigan, Joann B Sweasy
Molecular Reproduction and Development|November 30, 2006
Crypticity and functional distribution of the membrane associated alpha-L-fucosidase of human spermJennifer J Venditti, Katherine A Donigan, Barry S Bean
Mutagenesis|August 24, 2012
DNA polymerase β variant Ile260Met generates global gene expression changes related to cellular transformationKatherine A Donigan, David Tuck, Vince Schulz, et al.
Biochemistry|June 2, 2012
The E288K colon tumor variant of DNA polymerase β is a sequence specific mutatorDrew L Murphy, Katherine A Donigan, Joachim Jaeger, et al.
DNA Repair|February 21, 2012
The human gastric cancer-associated DNA polymerase β variant D160N is a mutator that induces cellular transformationKatherine A Donigan, Suzanne E Hile, Kristin A Eckert, et al.
The Journal of Biological Chemistry|March 27, 2014
The S229L colon tumor-associated variant of DNA polymerase β induces cellular transformation as a result of decreased polymerization efficiencyAntonia A Nemec, Drew L Murphy, Katherine A Donigan, et al.
The Journal of Biological Chemistry|February 18, 2014
The steric gate of DNA polymerase ι regulates ribonucleotide incorporation and deoxyribonucleotide fidelityKatherine A Donigan, Mary P McLenigan, Wei Yang, et al.
The Journal of Biological Chemistry|May 11, 2012
Colon cancer-associated DNA polymerase β variant induces genomic instability and cellular transformationAntonia A Nemec, Katherine A Donigan, Drew L Murphy, et al.
DNA Repair|September 5, 2015
Unlocking the steric gate of DNA polymerase η leads to increased genomic instability in Saccharomyces cerevisiaeKatherine A Donigan, Susana M Cerritelli, John P McDonald, et al.
Cancer Research|December 24, 2009
Potentiation of temozolomide cytotoxicity by inhibition of DNA polymerase beta is accentuated by BRCA2 mutationGregory C Stachelek, Shibani Dalal, Katherine A Donigan, et al.
Pageof 2

Showing results (1-10 of 13) with videos related to

Sort By:
Pageof 2
Molecular Carcinogenesis|March 24, 2009
Sequence context-specific mutagenesis and base excision repairKatherine A Donigan, Joann B Sweasy
Molecular Reproduction and Development|November 30, 2006
Crypticity and functional distribution of the membrane associated alpha-L-fucosidase of human spermJennifer J Venditti, Katherine A Donigan, Barry S Bean
Mutagenesis|August 24, 2012
DNA polymerase β variant Ile260Met generates global gene expression changes related to cellular transformationKatherine A Donigan, David Tuck, Vince Schulz, et al.
Biochemistry|June 2, 2012
The E288K colon tumor variant of DNA polymerase β is a sequence specific mutatorDrew L Murphy, Katherine A Donigan, Joachim Jaeger, et al.
DNA Repair|February 21, 2012
The human gastric cancer-associated DNA polymerase β variant D160N is a mutator that induces cellular transformationKatherine A Donigan, Suzanne E Hile, Kristin A Eckert, et al.
The Journal of Biological Chemistry|March 27, 2014
The S229L colon tumor-associated variant of DNA polymerase β induces cellular transformation as a result of decreased polymerization efficiencyAntonia A Nemec, Drew L Murphy, Katherine A Donigan, et al.
The Journal of Biological Chemistry|February 18, 2014
The steric gate of DNA polymerase ι regulates ribonucleotide incorporation and deoxyribonucleotide fidelityKatherine A Donigan, Mary P McLenigan, Wei Yang, et al.
The Journal of Biological Chemistry|May 11, 2012
Colon cancer-associated DNA polymerase β variant induces genomic instability and cellular transformationAntonia A Nemec, Katherine A Donigan, Drew L Murphy, et al.
DNA Repair|September 5, 2015
Unlocking the steric gate of DNA polymerase η leads to increased genomic instability in Saccharomyces cerevisiaeKatherine A Donigan, Susana M Cerritelli, John P McDonald, et al.
Cancer Research|December 24, 2009
Potentiation of temozolomide cytotoxicity by inhibition of DNA polymerase beta is accentuated by BRCA2 mutationGregory C Stachelek, Shibani Dalal, Katherine A Donigan, et al.
Pageof 2