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37 articles for thisTarget


The following articles (labelled with PubMed ID or TBD) are for your review

PMID
Cmpds
Data
Article Title
Organization
16
Fragment-Based Drug Discovery Targeting Inhibitor of Apoptosis Proteins: Discovery of a Non-Alanine Lead Series with Dual Activity Against cIAP1 and XIAP.EBI
Astex Pharmaceuticals
11
Discovery of a Dihydroisoquinolinone Derivative (NVP-CGM097): A Highly Potent and Selective MDM2 Inhibitor Undergoing Phase 1 Clinical Trials in p53wt Tumors.EBI
Novartis Institutes For Biomedical Research
19
The discovery of macrocyclic XIAP antagonists from a DNA-programmed chemistry library, and their optimization to give lead compounds with in vivo antitumor activity.EBI
Ensemble Therapeutics
14
Discovery of potent heterodimeric antagonists of inhibitor of apoptosis proteins (IAPs) with sustained antitumor activity.EBI
Bristol Myers Squibb
15
Discovery of tetrahydroisoquinoline-based bivalent heterodimeric IAP antagonists.EBI
Bristol Myers Squibb
41
Structure-based design and synthesis of tricyclic IAP (Inhibitors of Apoptosis Proteins) inhibitors.EBI
AstraZeneca
11
A potent bivalent Smac mimetic (SM-1200) achieving rapid, complete, and durable tumor regression in mice.EBI
University of Michigan
22
Dimeric Smac mimetics/IAP inhibitors as in vivo-active pro-apoptotic agents. Part II: Structural and biological characterization.EBI
Fondazione Irccs Istituto Nazionale Dei Tumori
13
Bivalent Smac mimetics with a diazabicyclic core as highly potent antagonists of XIAP and cIAP1/2 and novel anticancer agents.EBI
University of Michigan
5
A potent and orally active antagonist (SM-406/AT-406) of multiple inhibitor of apoptosis proteins (IAPs) in clinical development for cancer treatment.EBI
University of Michigan
8
Discovery of a potent small-molecule antagonist of inhibitor of apoptosis (IAP) proteins and clinical candidate for the treatment of cancer (GDC-0152).EBI
Genentech
18
Rational design, synthesis and characterization of potent, drug-like monomeric Smac mimetics as pro-apoptotic anticancer agents.EBI
Cisi
38
Discovery of aminopiperidine-based Smac mimetics as IAP antagonists.EBI
AstraZeneca
16
Potent bivalent Smac mimetics: effect of the linker on binding to inhibitor of apoptosis proteins (IAPs) and anticancer activity.EBI
University of Michigan
7
Nonpeptidic and potent small-molecule inhibitors of cIAP-1/2 and XIAP proteins.EBI
University of Michigan
3
Cyclopeptide Smac mimetics as antagonists of IAP proteins.EBI
University of Michigan
5
Design, synthesis, and evaluation of potent, nonpeptidic mimetics of second mitochondria-derived activator of caspases.EBI
Chinese Academy of Sciences
6
Potent, orally bioavailable diazabicyclic small-molecule mimetics of second mitochondria-derived activator of caspases.EBI
University of Michigan
13
Degradation-promoters of cellular inhibitor of apoptosis protein 1 based on bestatin and actinonin.EBI
The University of Tokyo
3
Characterization of a Potent and Orally Bioavailable Lys-Covalent Inhibitor of Apoptosis Protein (IAP) Antagonist.EBI
University of California
20
E3 Ligases Meet Their Match: Fragment-Based Approaches to Discover New E3 Ligands and to Unravel E3 Biology.EBI
AstraZeneca
3
Cyclic tailor-made amino acids in the design of modern pharmaceuticals.EBI
Nanjing Forestry University
12
Lysine Covalent Antagonists of Melanoma Inhibitors of Apoptosis Protein.EBI
University of California Riverside
14
Monomeric Targeted Protein Degraders.EBI
TBA
5
Aryl-fluorosulfate-based Lysine Covalent Pan-Inhibitors of Apoptosis Protein (IAP) Antagonists with Cellular Efficacy.EBI
TBA
16
Inhibitor of Apoptosis Protein (IAP) Antagonists in Anticancer Agent Discovery: Current Status and Perspectives.EBI
Ningxia Medical University
11
Clinical candidates modulating protein-protein interactions: The fragment-based experience.EBI
Taros Chemicals
29
Discovery of a novel class of dimeric Smac mimetics as potent IAP antagonists resulting in a clinical candidate for the treatment of cancer (AZD5582).EBI
AstraZeneca
37
Design of Potent pan-IAP and Lys-Covalent XIAP Selective Inhibitors Using a Thermodynamics Driven Approach.EBI
University of California Riverside
23
A Fragment-Derived Clinical Candidate for Antagonism of X-Linked and Cellular Inhibitor of Apoptosis Proteins: 1-(6-[(4-Fluorophenyl)methyl]-5-(hydroxymethyl)-3,3-dimethyl-1 H,2 H,3 H-pyrrolo[3,2- b]pyridin-1-yl)-2-[(2 R,5 R)-5-methyl-2-([(3R)-3-methylmorpholin-4-yl]methyl)piperazin-1-yl]ethan-1-oneEBI
Astex Pharmaceuticals
7
Targeting the Allosteric Site of Oncoprotein BCR-ABL as an Alternative Strategy for Effective Target Protein Degradation.EBI
Takeda Pharmaceutical
6
4-Connected azabicyclo[5.3.0]decane Smac mimetics-ZnEBI
Istituto Di Scienze E Tecnologie Molecolari (Istm)
21
Discovery of a Potent Nonpeptidomimetic, Small-Molecule Antagonist of Cellular Inhibitor of Apoptosis Protein 1 (cIAP1) and X-Linked Inhibitor of Apoptosis Protein (XIAP).EBI
Astex Pharmaceuticals
5
Structural analysis of human KDM5B guides histone demethylase inhibitor development.BDB
University of Oxford
17
Mild and efficient synthesis of new tetraketones as lipoxygenase inhibitors and antioxidants.BDB
Pharmaceutical Research Centre
2
Evaluation of the receptor selectivity of the H3 receptor antagonists, iodophenpropit and thioperamide: an interaction with the 5-HT3 receptor revealed.BDB
Vrije Universiteit
7
Pharmacological profiles for rat cortical M1 and M2 muscarinic receptors using selective antagonists: comparison with N1E-115 muscarinic receptors.BDB
Mayo Clinic