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Kurt W Kohn

Showing results (11-20 of 49) with videos related to

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Molecular Biology of the Cell|October 26, 2007
Chromatin challenges during DNA replication: a systems representationKurt W Kohn, Mirit I Aladjem, John N Weinstein, et al.
Plos Computational Biology|February 23, 2010
Predicted functions of MdmX in fine-tuning the response of p53 to DNA damageSohyoung Kim, Mirit I Aladjem, Geoffrey B McFadden, et al.
Clinical Cancer Research : an Official Journal of the American Association for Cancer Research|May 6, 2006
Chk2 molecular interaction map and rationale for Chk2 inhibitorsYves Pommier, John N Weinstein, Mirit I Aladjem, et al.
Molecular Biology of the Cell|November 4, 2005
Molecular interaction maps of bioregulatory networks: a general rubric for systems biologyKurt W Kohn, Mirit I Aladjem, John N Weinstein, et al.
Plos One|June 19, 2014
Gene expression correlations in human cancer cell lines define molecular interaction networks for epithelial phenotypeKurt W Kohn, Barry M Zeeberg, William C Reinhold, et al.
Oncogene|April 13, 2004
Apoptosis defects and chemotherapy resistance: molecular interaction maps and networksYves Pommier, Olivier Sordet, Smitha Antony, et al.
Current Pharmaceutical Design|August 17, 2005
Targeting chk2 kinase: molecular interaction maps and therapeutic rationaleYves Pommier, Olivier Sordet, V Ashutosh Rao, et al.
Molecular Systems Biology|October 4, 2006
Depicting combinatorial complexity with the molecular interaction map notationKurt W Kohn, Mirit I Aladjem, Sohyoung Kim, et al.
DNA Repair|August 29, 2006
Hereditary ataxia SCAN1 cells are defective for the repair of transcription-dependent topoisomerase I cleavage complexesZe-Hong Miao, Keli Agama, Olivier Sordet, et al.
Cancer Research|October 18, 2002
UCN-01 inhibits p53 up-regulation and abrogates gamma-radiation-induced G(2)-M checkpoint independently of p53 by targeting both of the checkpoint kinases, Chk2 and Chk1Qiang Yu, JiHyun La Rose, Hongliang Zhang, et al.
Pageof 5

Showing results (11-20 of 49) with videos related to

Sort By:
Pageof 5
Molecular Biology of the Cell|October 26, 2007
Chromatin challenges during DNA replication: a systems representationKurt W Kohn, Mirit I Aladjem, John N Weinstein, et al.
Plos Computational Biology|February 23, 2010
Predicted functions of MdmX in fine-tuning the response of p53 to DNA damageSohyoung Kim, Mirit I Aladjem, Geoffrey B McFadden, et al.
Clinical Cancer Research : an Official Journal of the American Association for Cancer Research|May 6, 2006
Chk2 molecular interaction map and rationale for Chk2 inhibitorsYves Pommier, John N Weinstein, Mirit I Aladjem, et al.
Molecular Biology of the Cell|November 4, 2005
Molecular interaction maps of bioregulatory networks: a general rubric for systems biologyKurt W Kohn, Mirit I Aladjem, John N Weinstein, et al.
Plos One|June 19, 2014
Gene expression correlations in human cancer cell lines define molecular interaction networks for epithelial phenotypeKurt W Kohn, Barry M Zeeberg, William C Reinhold, et al.
Oncogene|April 13, 2004
Apoptosis defects and chemotherapy resistance: molecular interaction maps and networksYves Pommier, Olivier Sordet, Smitha Antony, et al.
Current Pharmaceutical Design|August 17, 2005
Targeting chk2 kinase: molecular interaction maps and therapeutic rationaleYves Pommier, Olivier Sordet, V Ashutosh Rao, et al.
Molecular Systems Biology|October 4, 2006
Depicting combinatorial complexity with the molecular interaction map notationKurt W Kohn, Mirit I Aladjem, Sohyoung Kim, et al.
DNA Repair|August 29, 2006
Hereditary ataxia SCAN1 cells are defective for the repair of transcription-dependent topoisomerase I cleavage complexesZe-Hong Miao, Keli Agama, Olivier Sordet, et al.
Cancer Research|October 18, 2002
UCN-01 inhibits p53 up-regulation and abrogates gamma-radiation-induced G(2)-M checkpoint independently of p53 by targeting both of the checkpoint kinases, Chk2 and Chk1Qiang Yu, JiHyun La Rose, Hongliang Zhang, et al.
Pageof 5