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Molecular Microbiology|June 18, 2002
Deletion of the copper transporter CaCCC2 reveals two distinct pathways for iron acquisition in Candida albicansZiva Weissman, Revital Shemer, Daniel Kornitzer
Journal of Molecular Biology|June 15, 2013
Phosphorylation of the cyclin CaPcl5 modulates both cyclin stability and specific recognition of the substrateEinav Simon, Tsvia Gildor, Daniel Kornitzer
Molecular Biology of the Cell|April 9, 2005
Role for the SCFCDC4 ubiquitin ligase in Candida albicans morphogenesisAvigail Atir-Lande, Tsvia Gildor, Daniel Kornitzer
Eukaryotic Cell|November 15, 2011
Neddylation and CAND1 independently stimulate SCF ubiquitin ligase activity in Candida albicansNadine Sela, Avigail Atir-Lande, Daniel Kornitzer
Molecular and Cellular Biology|July 9, 2002
Regulation of the transcription factor Gcn4 by Pho85 cyclin PCL5Revital Shemer, Ariella Meimoun, Tsvi Holtzman, et al.
Molecular Microbiology|May 10, 2008
An endocytic mechanism for haemoglobin-iron acquisition in Candida albicansZiva Weissman, Revital Shemer, Elizabeth Conibear, et al.
Microbiology (Reading, England)|August 10, 2001
A highly polymorphic degenerate microsatellite for molecular strain typing of Candida kruseiRevital Shemer, Ziva Weissman, Nehama Hashman, et al.
Msphere|March 15, 2017
Regulation of the Candida albicans Hypha-Inducing Transcription Factor Ume6 by the CDK1 Cyclins Cln3 and Hgc1Sigal Mendelsohn, Mariel Pinsky, Ziva Weissman, et al.
Journal of Inorganic Biochemistry|February 12, 2026
Ferric reductase related proteins Frp1 and Frp2 mediate reductive heme uptake in the opportunistic pathogen Candida albicansYibo Fu, Yungeun Lee, Daniel Kornitzer, et al.
Eukaryotic Cell|February 11, 2005
Coevolution of cyclin Pcl5 and its substrate Gcn4Tsvia Gildor, Revital Shemer, Avigail Atir-Lande, et al.
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