Catherine Day
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New Zealand biochemist
Catherine Day 's AcademicInfluence.com Rankings
Catherine Day biology Degrees
Biology
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Biochemistry
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Biology
Catherine Day 's Degrees
- Bachelors Biochemistry University of Auckland
- PhD Biochemistry University of New Zealand
Why Is Catherine Day Influential?
(Suggest an Edit or Addition)According to Wikipedia, Catherine Louise Day is a New Zealand biochemist. She is currently a professor and was the head of the biochemistry department at the University of Otago. Career After a BSc at Massey University, Day completed a PhD entitled Expression and characterisation of the n-terminal half of human lactoferrin in 1993, also at Massey, before moving to the University of Otago where she rose to professor and head of department.
Catherine Day 's Published Works
Published Works
- Differential targeting of prosurvival Bcl-2 proteins by their BH3-only ligands allows complementary apoptotic function. (2005) (1793)
- The BH3 mimetic ABT-737 targets selective Bcl-2 proteins and efficiently induces apoptosis via Bak/Bax if Mcl-1 is neutralized. (2006) (1223)
- HtrA2 Promotes Cell Death through Its Serine Protease Activity and Its Ability to Antagonize Inhibitor of Apoptosis Proteins* (2002) (604)
- Structural insights into the degradation of Mcl-1 induced by BH3 domains (2007) (401)
- Structure of the MDM2/MDMX RING domain heterodimer reveals dimerization is required for their ubiquitylation in trans (2008) (281)
- TRAF2 Must Bind to Cellular Inhibitors of Apoptosis for Tumor Necrosis Factor (TNF) to Efficiently Activate NF-κB and to Prevent TNF-induced Apoptosis (2009) (235)
- The Bcl-2-regulated apoptotic pathway (2003) (215)
- Solution Structure of Prosurvival Mcl-1 and Characterization of Its Binding by Proapoptotic BH3-only Ligands* (2005) (214)
- Solution structure of a baculoviral inhibitor of apoptosis (IAP) repeat (1999) (210)
- Bim, Bad and Bmf: intrinsically unstructured BH3-only proteins that undergo a localized conformational change upon binding to prosurvival Bcl-2 targets (2007) (210)
- Bak activation for apoptosis involves oligomerization of dimers via their alpha6 helices. (2009) (194)
- Structure of the BH3 domains from the p53-inducible BH3-only proteins Noxa and Puma in complex with Mcl-1. (2008) (190)
- Structures of the cIAP2 RING Domain Reveal Conformational Changes Associated with Ubiquitin-conjugating Enzyme (E2) Recruitment* (2008) (183)
- Determination of cell survival by RING-mediated regulation of inhibitor of apoptosis (IAP) protein abundance. (2005) (180)
- RINGs hold the key to ubiquitin transfer. (2012) (172)
- The structure of Bcl‐w reveals a role for the C‐terminal residues in modulating biological activity (2003) (166)
- Smac Mimetics Activate the E3 Ligase Activity of cIAP1 Protein by Promoting RING Domain Dimerization* (2011) (148)
- Birinapant, a smac-mimetic with improved tolerability for the treatment of solid tumors and hematological malignancies. (2014) (143)
- The anti-apoptotic activity of XIAP is retained upon mutation of both the caspase 3– and caspase 9–interacting sites (2002) (136)
- Direct inhibition of caspase 3 is dispensable for the anti‐apoptotic activity of XIAP (2001) (128)
- Proapoptotic BH3-only proteins trigger membrane integration of prosurvival Bcl-w and neutralize its activity (2003) (123)
- Structural plasticity underpins promiscuous binding of the prosurvival protein A1. (2008) (105)
- CARD-mediated autoinhibition of cIAP1's E3 ligase activity suppresses cell proliferation and migration. (2011) (100)
- Structure of the bacterial type II NADH dehydrogenase: a monotopic membrane protein with an essential role in energy generation (2014) (95)
- Assembling the building blocks: structure and function of inhibitor of apoptosis proteins (2010) (91)
- RING domain dimerization is essential for RNF4 function. (2010) (88)
- Localization of dynein light chains 1 and 2 and their pro-apoptotic ligands. (2004) (75)
- Asymmetric recruitment of cIAPs by TRAF2. (2010) (74)
- Intrinsically Disordered Proteins in Bcl-2 Regulated Apoptosis (2010) (74)
- Regulation of apoptosis: uncovering the binding determinants. (2005) (70)
- FCA does not bind abscisic acid (2008) (58)
- Studies of the N-terminal half of human lactoferrin produced from the cloned cDNA demonstrate that interlobe interactions modulate iron release. (1992) (58)
- Structure of the recombinant N-terminal lobe of human lactoferrin at 2.0 A resolution. (1993) (56)
- Regulation of ubiquitin transfer by XIAP, a dimeric RING E3 ligase. (2013) (53)
- Differential Targeting of Prosurvival Bcl-2 Proteins by Their BH 3-Only Ligands Allows Complementary Apoptotic (2005) (52)
- Crystal structure of the amino-terminal coiled-coil domain of the APC tumor suppressor. (2000) (52)
- Reevaluation of Abscisic Acid-Binding Assays Shows That G-Protein-Coupled Receptor2 Does Not Bind Abscisic Acid (2009) (49)
- Secondary ubiquitin-RING docking enhances Arkadia and Ark2C E3 ligase activity (2015) (49)
- The N-terminal extension of UBE2E ubiquitin-conjugating enzymes limits chain assembly. (2013) (46)
- Solution structure of Psb27 from cyanobacterial photosystem II. (2009) (45)
- Tumor Necrosis Factor (TNF) Signaling, but Not TWEAK (TNF-like Weak Inducer of Apoptosis)-triggered cIAP1 (Cellular Inhibitor of Apoptosis Protein 1) Degradation, Requires cIAP1 RING Dimerization and E2 Binding (2010) (45)
- The molecular basis of lysine 48 ubiquitin chain synthesis by Ube2K (2015) (43)
- IAPs: Modular regulators of cell signalling. (2015) (39)
- A Direct Interaction with NEDD1 Regulates γ-Tubulin Recruitment to the Centrosome (2010) (38)
- Enhancing the peroxidase activity of cytochrome c by mutation of residue 41: implications for the peroxidase mechanism and cytochrome c release. (2014) (36)
- FRIGIDA and related proteins have a conserved central domain and family specific N- and C- terminal regions that are functionally important (2010) (31)
- The activity of TRAF RING homo- and heterodimers is regulated by zinc finger 1 (2017) (31)
- The structure of Boo/Diva reveals a divergent Bcl‐2 protein (2010) (29)
- Noncovalent Ubiquitin Interactions Regulate the Catalytic Activity of Ubiquitin Writers. (2016) (24)
- A bidentate Polycomb Repressive-Deubiquitinase complex is required for efficient activity on nucleosomes (2018) (23)
- Use of E2~ubiquitin conjugates for the characterization of ubiquitin transfer by RING E3 ligases such as the inhibitor of apoptosis proteins. (2014) (22)
- Supplemental Data Bak Activation for Apoptosis Involves Oligomerization of Dimers via Their α6 Helices (2008) (20)
- Tissue distribution of Diablo/Smac revealed by monoclonal antibodies (2002) (20)
- Regulation of E2s: A Role for Additional Ubiquitin Binding Sites? (2017) (17)
- Structure and Function of the RING Domains of RNF20 and RNF40, Dimeric E3 Ligases that Monoubiquitylate Histone H2B. (2016) (16)
- The structure and ubiquitin binding properties of TRAF RING heterodimers. (2021) (13)
- The RING Domain of RING Finger 12 Efficiently Builds Degradative Ubiquitin Chains. (2020) (11)
- The Ubiquitin-associated Domain of Cellular Inhibitor of Apoptosis Proteins Facilitates Ubiquitylation* (2014) (11)
- Collaborative networks enable the rapid establishment of serological assays for SARS-CoV-2 during nationwide lockdown in New Zealand (2020) (9)
- Structure of a domain-opened mutant (R121D) of the human lactoferrin N-lobe refined from a merohedrally twinned crystal form. (2002) (9)
- A cryptic tubulin-binding domain links MEKK1 to curved tubulin protomers (2020) (7)
- Preliminary crystallographic studies of the amino terminal half of human lactoferrin in its iron-saturated and iron-free forms. (1992) (6)
- The RING domain of RING Finger 11 (RNF11) protein binds Ubc13 and inhibits formation of polyubiquitin chains (2018) (6)
- Ubiquitin and a charged loop regulate the ubiquitin E3 ligase activity of Ark2C (2022) (5)
- Cloning and expression of the C-terminal lobe of human lactoferrin. (1994) (5)
- Lactoferrin cDNA. Expression and in vitro mutagenesis. (1994) (3)
- Identification of Ubiquitin Variants That Inhibit the E2 Ubiquitin Conjugating Enzyme, Ube2k. (2021) (3)
- Tumor Necrosis Factor ( TNF ) Signaling , but Not TWEAK ( TNF-like Weak Inducer of Apoptosis )-triggered cIAP 1 ( Cellular Inhibitor of Apoptosis Protein 1 ) Degradation , Requires cIAP 1 RING Dimerization and E 2 Binding □ (2010) (2)
- Identification of ubiquitin variants that inhibit the E2 ubiquitin conjugating enzyme, Ube2k (2021) (2)
- A Sting in the Tail: Ubiquitin Ligase Function of Inhibitor of Apoptosis Proteins (2009) (2)
- Re-evaluation of abscisic acid (ABA) binding assays shows that GCR2 does not bind ABA (2009) (2)
- A bidentate Polycomb Repressive-Deubiquitinase complex is required for efficient activity on nucleosomes (2018) (1)
- Structure of the cIAP2 RING domain (2008) (1)
- Altered Domain Closure and Iron Binding in Lactoferrin Mutants (1997) (1)
- TRAF trimers form immune signalling networks via RING domain dimerization. (2022) (1)
- Structure and Function of IAP and Bcl‐2 Proteins (2009) (0)
- Crystal Structure of RNF165 in complex with a UbcH5b~Ub conjugate (2017) (0)
- SOLUTION STRUCTURE OF THE CASPASE RECRUITMENT DOMAIN (CARD) FROM APAF-1 (2000) (0)
- Solution structure of MCL-1 (2004) (0)
- Ubiquitylation Cellular Inhibitor of Apoptosis Proteins The Ubiquitin-associated Domain of Signal Transduction : (2014) (0)
- Crystal structure of Ube2K~Ubiquitin conjugate (2015) (0)
- A massive machine regulates cell death (2023) (0)
- Mutagenesis of Human Lactoferrin and Expression in Baby Hamster Kidney Cells (1997) (0)
- Structure of BIR1 from cIAP1 (2010) (0)
- Crystal Structure of a UbcH5b~Ub conjugate (2017) (0)
- Crystal structure of the RNF20 RING domain (2016) (0)
- Crystal structure of the RNF4 ring domain dimer (2010) (0)
- CRYSTAL STRUCTURE OF THE N-TERMINAL COILED COIL DOMAIN FROM APC (2000) (0)
- Characterisation of the Bcl-2 protein A 1 bound to BH 3-domain peptides (2006) (0)
- Structure of a TRAF6-Ubc13~Ub complex (2017) (0)
- Solution structure of a divergent Bcl-2 protein (2010) (0)
- Structure of the cIAP2 RING domain bound to UbcH5b (2008) (0)
- A cryptic tubulin-binding domain links MEKK1 to microtubule remodelling (2020) (0)
- Crystal structure of the XIAP RING domain (2012) (0)
- Structure of mouse A1 bound to the Puma BH3-domain (2008) (0)
- Structure of RING finger protein 165 (2015) (0)
- Tumor necrosis factor (TNF) signaling, but not TWEAK (TNF-like weak inducer of apoptosis)-triggered cIAP1 (cellular inhibitor of apoptosis protein 1) degradation, requires cIAP1 RING dimerization and E2 binding. (2017) (0)
- The activity of TRAF RING homo- and heterodimers is regulated by zinc finger 1 (2017) (0)
- Structural characterisation of the Bcl-2 protein A1 bound to BH3-domain peptides (2006) (0)
- Crystal Structure of the MDM2-MDMX RING Domain Heterodimer (2008) (0)
- Solution Structure of MCL-1 Complexed with NoxaA (2008) (0)
- RNF12 RING domain in complex with Ube2d2 (2020) (0)
- Expression and characterisation of the n-terminal half of human lactoferrin : [t]his thesis is submitted to Massey University as partial fulfilment of the requirements for the degree of Doctor of Philosophy in Biochemistry (1993) (0)
- Structure of RNF165 in complex with a UbcH5b~Ub conjugate (2017) (0)
- Ubiquitin Variant Inhibitors Meet the Deubiquitinase USP15. (2019) (0)
- RNF12 RING domain in complex with a Ube2d2~Ub conjugate (2020) (0)
- From seeds to trees: how E2 enzymes grow ubiquitin chains (2023) (0)
- Crystal structure of the F495L mutant XIAP RING domain (2012) (0)
- Structure of the R121D mutant N-terminal lobe of human lactoferrin (1996) (0)
- Structure of cIAP1 CARD (2011) (0)
- HUMAN LACTOFERRIN, N-TERMINAL LOBE MUTANT WITH ARG 121 REPLACED BY GLU (R121E) (1997) (0)
- Structure of TRAF5 and TRAF6 RING Hetero dimer (2021) (0)
- Structural analysis of caspase recruitment domains (CARDs) (2000) (0)
- Structure of the PR-DUB complex (2018) (0)
- Structure of UbE2D2:RNF165:Ub complex (2015) (0)
- E2 enzymes: lessons in ubiquitin transfer from XLID patients (2018) (0)
- Solution Structure and Physiological Requirements for Psb27 in Synechocystis sp. PCC 6803 (2013) (0)
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Catherine Day is affiliated with the following schools: