Set-up and screening of a fragment library targeting the 14-3-3 protein interface

scientific article published on 22 July 2019

Set-up and screening of a fragment library targeting the 14-3-3 protein interface is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1039/C9MD00215D
P932PMC publication ID6839876
P698PubMed publication ID31814953

P50authorTomáš ObšilQ57548297
João Filipe NevesQ87424554
Dario ValentiQ91791753
Isabelle LandrieuQ55117796
Christian OttmannQ56938377
P2093author name stringXavier Hanoulle
François-Xavier Cantrelle
Stanimira Hristeva
Laura M Levy
Dimitrios Tzalis
Domenico Lentini Santo
P2860cites workRationally Designed Semisynthetic Natural Product Analogues for Stabilization of 14-3-3 Protein-Protein InteractionsQ57180362
Inhibition of 14-3-3/Tau by Hybrid Small-Molecule Peptides Operating via Two Different Binding ModesQ57531336
Backbone chemical shift assignments of human 14-3-3σQ58093220
Site-Directed Fragment-Based Screening for the Discovery of Protein-Protein Interaction StabilizersQ91304506
Clinical candidates modulating protein-protein interactions: The fragment-based experienceQ91624613
Crystal structure of the 14-3-3zeta:serotonin N-acetyltransferase complex. a role for scaffolding in enzyme regulationQ24291204
14-3-3 inhibits Bad-induced cell death through interaction with serine-136Q24291932
Structure of the p53 C-terminus bound to 14-3-3: implications for stabilization of the p53 tetramerQ24301745
Structure of a 14-3-3 coordinated hexamer of the plant plasma membrane H+ -ATPase by combining X-ray crystallography and electron cryomicroscopyQ27643769
14-3-3 proteins act as intracellular receptors for rice Hd3a florigenQ27671307
Molecular tweezers modulate 14-3-3 protein-protein interactionsQ27684041
Stabilizer-Guided Inhibition of Protein-Protein InteractionsQ27702573
Blinded by the Light: The Growing Complexity of p53Q29547590
WaterLOGSY as a method for primary NMR screening: practical aspects and range of applicability.Q30671345
Lessons for fragment library design: analysis of output from multiple screening campaignsQ30864260
A ‘Rule of Three’ for fragment-based lead discovery?Q33973131
Targeting protein-protein interactions and fragment-based drug discovery.Q34050098
Fragment-based hit identification: thinking in 3D.Q34887882
Progress in discovery of small-molecule modulators of protein-protein interactions via fragment screeningQ35631047
Probable participation of 14-3-3 in tau protein oligomerization and aggregation.Q37923678
Structural basis of 14-3-3 protein functions.Q37932715
Using chemical shift perturbation to characterise ligand bindingQ38130403
Modulators of protein-protein interactionsQ38204807
NMR chemical exchange as a probe for ligand-binding kinetics in a theophylline-binding RNA aptamer.Q38355608
NMR in drug discovery: A practical guide to identification and validation of ligands interacting with biological macromolecules.Q39020577
Efficient nuclear export of p65-IkappaBalpha complexes requires 14-3-3 proteins.Q40239759
An Effective Strategy for Stabilizing Minimal Coiled Coil MimeticsQ40572944
The docking protein Gab2 is overexpressed and estrogen regulated in human breast cancerQ40715301
Identification of Two Secondary Ligand Binding Sites in 14-3-3 Proteins Using Fragment ScreeningQ41246646
Structural Basis for the Interaction of a Human Small Heat Shock Protein with the 14-3-3 Universal Signaling RegulatorQ41909298
The Molecular Tweezer CLR01 Stabilizes a Disordered Protein-Protein Interface.Q47160051
Molecular basis of the 14-3-3 protein-dependent activation of yeast neutral trehalase Nth1.Q47583534
Escape from flatland: increasing saturation as an approach to improving clinical successQ48833163
14-3-3 protein directly interacts with the kinase domain of calcium/calmodulin-dependent protein kinase kinase (CaMKK2).Q52323429
P433issue10
P304page(s)1796-1802
P577publication date2019-07-22
P1433published inMedChemCommQ3303881
P1476titleSet-up and screening of a fragment library targeting the 14-3-3 protein interface
P478volume10

Reverse relations

Q89476923Theory and applications of differential scanning fluorimetry in early-stage drug discoverycites workP2860