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1.
Angew Chem Int Ed Engl ; 58(4): 1062-1066, 2019 01 21.
Artículo en Inglés | MEDLINE | ID: mdl-30569600

RESUMEN

Reported is the identification of the furo[3,2-b]pyridine core as a novel scaffold for potent and highly selective inhibitors of cdc-like kinases (CLKs) and efficient modulators of the Hedgehog signaling pathway. Initially, a diverse target compound set was prepared by synthetic sequences based on chemoselective metal-mediated couplings, including assembly of the furo[3,2-b]pyridine scaffold by copper-mediated oxidative cyclization. Optimization of the subseries containing 3,5-disubstituted furo[3,2-b]pyridines afforded potent, cell-active, and highly selective inhibitors of CLKs. Profiling of the kinase-inactive subset of 3,5,7-trisubstituted furo[3,2-b]pyridines revealed sub-micromolar modulators of the Hedgehog pathway.


Asunto(s)
Furanos/química , Proteínas Hedgehog/química , Inhibidores de Proteínas Quinasas/síntesis química , Piridinas/química , Bibliotecas de Moléculas Pequeñas/síntesis química , Sitios de Unión , Supervivencia Celular/efectos de los fármacos , Humanos , Concentración 50 Inhibidora , Células MCF-7 , Estructura Molecular , Unión Proteica , Inhibidores de Proteínas Quinasas/química , Inhibidores de Proteínas Quinasas/farmacología , Bibliotecas de Moléculas Pequeñas/química , Bibliotecas de Moléculas Pequeñas/farmacología
2.
Chemphyschem ; 18(7): 785-795, 2017 Apr 05.
Artículo en Inglés | MEDLINE | ID: mdl-28128514

RESUMEN

The structural basis for the interaction of roscovitine and analogues containing 13 different bioisosteric central heterocycles with the enzyme cyclin-dependent kinase 2 (CDK2) is elucidated. Although all the central scaffolds are very similar to the purine core of roscovitine, the experimentally determined IC50 values of the inhibitors span three orders of magnitude. By using an extensive computational chemistry approach, the affinities of the inhibitors to CDK2 are determined as calculated binding scores of complexes of the inhibitors with the protein. The interactions of the inhibitors with CDK2 are computationally described by using a hybrid quantum mechanics/semi-empirical quantum mechanics method (QM/SQM), which combines the DFT-D method for the QM part and the PM6-D3H4X method for the SQM part. The solvent effect is described by the COSMO implicit solvation model at the SQM level for the whole system. The contributions of the scaffolds and the individual substituents, quantified and evaluated in relation to conformations of optimized protein-inhibitor complexes, are found not to be simply additive. The inhibitory activity of the selected candidates, including two newly prepared compounds, is tested against CDK2. The results of the calculations are in close agreement with the experimental data.


Asunto(s)
Quinasa 2 Dependiente de la Ciclina/química , Compuestos Heterocíclicos/química , Inhibidores de Proteínas Quinasas/química , Purinas/química , Teoría Cuántica , Cristalografía por Rayos X , Quinasa 2 Dependiente de la Ciclina/antagonistas & inhibidores , Compuestos Heterocíclicos/farmacología , Modelos Moleculares , Estructura Molecular , Inhibidores de Proteínas Quinasas/farmacología , Purinas/farmacología , Roscovitina , Electricidad Estática , Termodinámica
3.
Eur J Med Chem ; 126: 1118-1128, 2017 Jan 27.
Artículo en Inglés | MEDLINE | ID: mdl-28039837

RESUMEN

We present comprehensive testing of solvent representation in quantum mechanics (QM)-based scoring of protein-ligand affinities. To this aim, we prepared 21 new inhibitors of cyclin-dependent kinase 2 (CDK2) with the pyrazolo[1,5-a]pyrimidine core, whose activities spanned three orders of magnitude. The crystal structure of a potent inhibitor bound to the active CDK2/cyclin A complex revealed that the biphenyl substituent at position 5 of the pyrazolo[1,5-a]pyrimidine scaffold was located in a previously unexplored pocket and that six water molecules resided in the active site. Using molecular dynamics, protein-ligand interactions and active-site water H-bond networks as well as thermodynamics were probed. Thereafter, all the inhibitors were scored by the QM approach utilizing the COSMO implicit solvent model. Such a standard treatment failed to produce a correlation with the experiment (R2 = 0.49). However, the addition of the active-site waters resulted in significant improvement (R2 = 0.68). The activities of the compounds could thus be interpreted by taking into account their specific noncovalent interactions with CDK2 and the active-site waters. In summary, using a combination of several experimental and theoretical approaches we demonstrate that the inclusion of explicit solvent effects enhance QM/COSMO scoring to produce a reliable structure-activity relationship with physical insights. More generally, this approach is envisioned to contribute to increased accuracy of the computational design of novel inhibitors.


Asunto(s)
Dominio Catalítico , Quinasa 2 Dependiente de la Ciclina/antagonistas & inhibidores , Pirimidinas/química , Pirimidinas/farmacología , Teoría Cuántica , Solventes/química , Agua/química , Ciclina A/metabolismo , Quinasa 2 Dependiente de la Ciclina/química , Quinasa 2 Dependiente de la Ciclina/metabolismo , Diseño de Fármacos , Humanos , Simulación de Dinámica Molecular , Inhibidores de Proteínas Quinasas/química , Inhibidores de Proteínas Quinasas/metabolismo , Inhibidores de Proteínas Quinasas/farmacología , Pirimidinas/metabolismo , Relación Estructura-Actividad
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