Biblio
Found 15 results
Filters: Author is Spiliotopoulos, D. [Clear All Filters]
Identification of BAZ2A bromodomain hit compounds. Acta Crystallographica Section A: Foundations of Crystallography. 78(X):a418-a418.
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2023. Identification of a BAZ2A-bromodomain hit compound by fragment growing. ACS Medicinal Chemistry Letters. 13(9):1434-1443.
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2022. Hitting a moving target: simulation and crystallography study of ATAD2 bromodomain blockers. ACS Medicinal Chemistry Letters. 11(8):1573-1580.
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2020. Understanding the mechanism of action of pyrrolo[3,2-b]quinoxaline-derivatives as kinase inhibitors. RSC Medicinal Chemistry. 11(8):1573-1580.
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2020. Ligand retargeting by binding site analogy. European Journal of Medicinal Chemistry. 175:107-113.
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2019. Chemical space expansion of bromodomain ligands guided by in silico virtual couplings (AutoCouple). ACS Central Science. 4:180-188.
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2018. Structural analysis of small molecule binding to the BAZ2A and BAZ2B bromodomains. ChemMedChem. 13(14):1479-1487.
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2018. Discovery of BAZ2A bromodomain ligands. European Journal of Medicinal Chemistry. 139:564-572.
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2017. Virtual screen to NMR (VS2NMR): Discovery of fragment hits for the CBP bromodomain. Bioorganic & Medicinal Chemistry Letters. 27(11):2472-2478.
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2017. Discovery of CREBBP bromodomain inhibitors by high-throughput docking and hit optimization guided by molecular dynamics. Journal of Medicinal Chemistry. 59(4):1340-1349.
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2016. Fragment-based design of selective nanomolar ligands of the CREBBP bromodomain. Journal of Medicinal Chemistry. 59(4):1350-1356.
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2016. Fragment-based in silico screening of bromodomain ligands. Drug Discovery Today. Technologies. 19:81-90.
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2016. Structural analysis of the binding of type I, I1/2, and II inhibitors to eph tyrosine kinases. ACS Medicinal Chemistry Letters. 6(1):79-83.
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2015. Discovery of BRD4 bromodomain inhibitors by fragment-based high-throughput docking. Bioorganic & Medicinal Chemistry Letters. 24(11):2493-2496.
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2014. Molecular dynamics simulations of bromodomains reveal binding-site flexibility and multiple binding modes of the natural ligand acetyl-lysine. Israel Journal of Chemistry. 54(8-9):1084–1092.
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2014.