Sally Kornbluth

Affiliations: 
Duke University, Durham, NC 
Area:
Cell Biology, Molecular Biology, Biochemistry
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"Sally Kornbluth"
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Parents

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Hidesaburo Hanafusa grad student Rockefeller (FlyTree)
John Newport post-doc UCSD (Cell Biology Tree)

Children

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Kenneth S. Thress grad student 2000 Duke
Jessica S. Tashker grad student 2002 Duke
Daniel A. Colon-Ramos grad student 2003 Duke
Christopher L. Holley grad student 1998-2003 Duke
Jessica B. Casaletto grad student 2005 Duke
Zachary T. Schafer grad student 2006 Duke
Eugene Gan Cheok Jin grad student 2007 Duke
Yanxiang Guo grad student 2008 Duke
Qiju Wu grad student 2008 Duke
Sarah R. Horn grad student 2010 Duke
Carrie E. Johnson grad student 2010 Duke
Amanda B. Parrish grad student 2010 Duke
Wanli Tang grad student 2010 Duke
Marisa R. Buchakjian grad student 2011 Duke
Chih-Sheng Yang grad student 2011 Duke
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Publications

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Robeson AC, Lindblom KR, Wojton J, et al. (2018) Dimer-specific immunoprecipitation of active caspase-2 identifies TRAF proteins as novel activators. The Embo Journal
Matsuura K, Huang NJ, Cocce K, et al. (2016) Downregulation of the proapoptotic protein MOAP-1 by the UBR5 ubiquitin ligase and its role in ovarian cancer resistance to cisplatin. Oncogene
Foss KM, Robeson AC, Kornbluth S, et al. (2015) Mitotic phosphatase activity is required for MCC maintenance during the spindle checkpoint. Cell Cycle (Georgetown, Tex.). 0
Yang CS, Matsuura K, Huang NJ, et al. (2015) Fatty acid synthase inhibition engages a novel caspase-2 regulatory mechanism to induce ovarian cancer cell death. Oncogene. 34: 3264-72
Machado MV, Michelotti GA, Pereira Tde A, et al. (2015) Reduced lipoapoptosis, hedgehog pathway activation and fibrosis in caspase-2 deficient mice with non-alcoholic steatohepatitis. Gut. 64: 1148-57
Foss K, Zhang L, Robeson AC, et al. (2015) Abstract 3770: The spindle assembly checkpoint requires phosphatase activity Cancer Research. 75: 3770-3770
Yang CS, Matsuura K, Huang NJ, et al. (2015) Fatty acid synthase inhibition engages a novel caspase-2 regulatory mechanism to induce ovarian cancer cell death Oncogene. 34: 3264-3272
Huang B, Yang CS, Wojton J, et al. (2014) Metabolic control of Ca2+/calmodulin-dependent protein kinase II (CaMKII)-mediated caspase-2 suppression by the B55β/protein phosphatase 2A (PP2A). The Journal of Biological Chemistry. 289: 35882-90
Yang CS, Sinenko SA, Thomenius MJ, et al. (2014) The deubiquitinating enzyme DUBAI stabilizes DIAP1 to suppress Drosophila apoptosis. Cell Death and Differentiation. 21: 604-11
Kornbluth S. (2014) Abstract SY37-03: Lifting the metabolic break on caspase 2 to enhance chemotherapy Cancer Research. 74
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