Cargando…

Halogen Atoms in the Protein–Ligand System. Structural and Thermodynamic Studies of the Binding of Bromobenzotriazoles by the Catalytic Subunit of Human Protein Kinase CK2

[Image: see text] Binding of a family of brominated benzotriazoles to the catalytic subunit of human protein kinase CK2 (hCK2α) was used as a model system to assess the contribution of halogen bonding to protein–ligand interaction. CK2 is a constitutively active pleiotropic serine/threonine protein...

Descripción completa

Detalles Bibliográficos
Autores principales: Czapinska, Honorata, Winiewska-Szajewska, Maria, Szymaniec-Rutkowska, Anna, Piasecka, Anna, Bochtler, Matthias, Poznański, Jarosław
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8041304/
https://www.ncbi.nlm.nih.gov/pubmed/33689348
http://dx.doi.org/10.1021/acs.jpcb.0c10264
_version_ 1783677915825700864
author Czapinska, Honorata
Winiewska-Szajewska, Maria
Szymaniec-Rutkowska, Anna
Piasecka, Anna
Bochtler, Matthias
Poznański, Jarosław
author_facet Czapinska, Honorata
Winiewska-Szajewska, Maria
Szymaniec-Rutkowska, Anna
Piasecka, Anna
Bochtler, Matthias
Poznański, Jarosław
author_sort Czapinska, Honorata
collection PubMed
description [Image: see text] Binding of a family of brominated benzotriazoles to the catalytic subunit of human protein kinase CK2 (hCK2α) was used as a model system to assess the contribution of halogen bonding to protein–ligand interaction. CK2 is a constitutively active pleiotropic serine/threonine protein kinase that belongs to the CMGC group of eukaryotic protein kinases (EPKs). Due to the addiction of some cancer cells, CK2 is an attractive and well-characterized drug target. Halogenated benzotriazoles act as ATP-competitive inhibitors with unexpectedly good selectivity for CK2 over other EPKs. We have characterized the interaction of bromobenzotriazoles with hCK2α by X-ray crystallography, low-volume differential scanning fluorimetry, and isothermal titration calorimetry. Properties of free ligands in solution were additionally characterized by volumetric and RT-HPLC measurements. Thermodynamic data indicate that the affinity increases with bromo substitution, with greater contributions from 5- and 6-substituents than 4- and 7-substituents. Except for 4,7-disubstituted compounds, the bromobenzotriazoles adopt a canonical pose with the triazole close to lysine 68, which precludes halogen bonding. More highly substituted benzotriazoles adopt many additional noncanonical poses, presumably driven by a large hydrophobic contribution to binding. Some noncanonical ligand orientations allow the formation of halogen bonds with the hinge region. Consistent with a predominantly hydrophobic interaction, the isobaric heat capacity decreases upon ligand binding, the more so the higher the substitution.
format Online
Article
Text
id pubmed-8041304
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-80413042021-04-13 Halogen Atoms in the Protein–Ligand System. Structural and Thermodynamic Studies of the Binding of Bromobenzotriazoles by the Catalytic Subunit of Human Protein Kinase CK2 Czapinska, Honorata Winiewska-Szajewska, Maria Szymaniec-Rutkowska, Anna Piasecka, Anna Bochtler, Matthias Poznański, Jarosław J Phys Chem B [Image: see text] Binding of a family of brominated benzotriazoles to the catalytic subunit of human protein kinase CK2 (hCK2α) was used as a model system to assess the contribution of halogen bonding to protein–ligand interaction. CK2 is a constitutively active pleiotropic serine/threonine protein kinase that belongs to the CMGC group of eukaryotic protein kinases (EPKs). Due to the addiction of some cancer cells, CK2 is an attractive and well-characterized drug target. Halogenated benzotriazoles act as ATP-competitive inhibitors with unexpectedly good selectivity for CK2 over other EPKs. We have characterized the interaction of bromobenzotriazoles with hCK2α by X-ray crystallography, low-volume differential scanning fluorimetry, and isothermal titration calorimetry. Properties of free ligands in solution were additionally characterized by volumetric and RT-HPLC measurements. Thermodynamic data indicate that the affinity increases with bromo substitution, with greater contributions from 5- and 6-substituents than 4- and 7-substituents. Except for 4,7-disubstituted compounds, the bromobenzotriazoles adopt a canonical pose with the triazole close to lysine 68, which precludes halogen bonding. More highly substituted benzotriazoles adopt many additional noncanonical poses, presumably driven by a large hydrophobic contribution to binding. Some noncanonical ligand orientations allow the formation of halogen bonds with the hinge region. Consistent with a predominantly hydrophobic interaction, the isobaric heat capacity decreases upon ligand binding, the more so the higher the substitution. American Chemical Society 2021-03-09 2021-03-18 /pmc/articles/PMC8041304/ /pubmed/33689348 http://dx.doi.org/10.1021/acs.jpcb.0c10264 Text en © 2021 The Authors. Published by American Chemical Society Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Czapinska, Honorata
Winiewska-Szajewska, Maria
Szymaniec-Rutkowska, Anna
Piasecka, Anna
Bochtler, Matthias
Poznański, Jarosław
Halogen Atoms in the Protein–Ligand System. Structural and Thermodynamic Studies of the Binding of Bromobenzotriazoles by the Catalytic Subunit of Human Protein Kinase CK2
title Halogen Atoms in the Protein–Ligand System. Structural and Thermodynamic Studies of the Binding of Bromobenzotriazoles by the Catalytic Subunit of Human Protein Kinase CK2
title_full Halogen Atoms in the Protein–Ligand System. Structural and Thermodynamic Studies of the Binding of Bromobenzotriazoles by the Catalytic Subunit of Human Protein Kinase CK2
title_fullStr Halogen Atoms in the Protein–Ligand System. Structural and Thermodynamic Studies of the Binding of Bromobenzotriazoles by the Catalytic Subunit of Human Protein Kinase CK2
title_full_unstemmed Halogen Atoms in the Protein–Ligand System. Structural and Thermodynamic Studies of the Binding of Bromobenzotriazoles by the Catalytic Subunit of Human Protein Kinase CK2
title_short Halogen Atoms in the Protein–Ligand System. Structural and Thermodynamic Studies of the Binding of Bromobenzotriazoles by the Catalytic Subunit of Human Protein Kinase CK2
title_sort halogen atoms in the protein–ligand system. structural and thermodynamic studies of the binding of bromobenzotriazoles by the catalytic subunit of human protein kinase ck2
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8041304/
https://www.ncbi.nlm.nih.gov/pubmed/33689348
http://dx.doi.org/10.1021/acs.jpcb.0c10264
work_keys_str_mv AT czapinskahonorata halogenatomsintheproteinligandsystemstructuralandthermodynamicstudiesofthebindingofbromobenzotriazolesbythecatalyticsubunitofhumanproteinkinaseck2
AT winiewskaszajewskamaria halogenatomsintheproteinligandsystemstructuralandthermodynamicstudiesofthebindingofbromobenzotriazolesbythecatalyticsubunitofhumanproteinkinaseck2
AT szymaniecrutkowskaanna halogenatomsintheproteinligandsystemstructuralandthermodynamicstudiesofthebindingofbromobenzotriazolesbythecatalyticsubunitofhumanproteinkinaseck2
AT piaseckaanna halogenatomsintheproteinligandsystemstructuralandthermodynamicstudiesofthebindingofbromobenzotriazolesbythecatalyticsubunitofhumanproteinkinaseck2
AT bochtlermatthias halogenatomsintheproteinligandsystemstructuralandthermodynamicstudiesofthebindingofbromobenzotriazolesbythecatalyticsubunitofhumanproteinkinaseck2
AT poznanskijarosław halogenatomsintheproteinligandsystemstructuralandthermodynamicstudiesofthebindingofbromobenzotriazolesbythecatalyticsubunitofhumanproteinkinaseck2