Solid-Supported Proteins in the Liquid Chromatography Domain to Probe Ligand-Target Interactions

Ligand-target interactions play a central role in drug discovery processes because these interactions are crucial in biological systems. Small molecules-proteins interactions can regulate and modulate protein function and activity through conformational changes. Therefore, bioanalytical tools to scr...

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Main Authors: Marcela Cristina de Moraes, Carmen Lucia Cardoso, Quezia Bezerra Cass
Format: Article
Language:English
Published: Frontiers Media S.A. 2019-11-01
Series:Frontiers in Chemistry
Subjects:
Online Access:https://www.frontiersin.org/article/10.3389/fchem.2019.00752/full
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spelling doaj-015037b28eba40adab939a8d0ead36202020-11-25T01:28:51ZengFrontiers Media S.A.Frontiers in Chemistry2296-26462019-11-01710.3389/fchem.2019.00752497198Solid-Supported Proteins in the Liquid Chromatography Domain to Probe Ligand-Target InteractionsMarcela Cristina de Moraes0Carmen Lucia Cardoso1Quezia Bezerra Cass2Laboratório SINCROMA, Instituto de Química, Departamento de Química Orgânica, Universidade Federal Fluminense, Niterói, BrazilGrupo de Cromatografia de Bioafinidade e Produtos Naturais, Departamento de Química, Faculdade de Filosofia, Ciências e Letras de Ribeirão Preto, Universidade de São Paulo, Ribeirão Preto, BrazilSeparare, Departamento de Química, Universidade Federal de São Carlos, São Carlos, BrazilLigand-target interactions play a central role in drug discovery processes because these interactions are crucial in biological systems. Small molecules-proteins interactions can regulate and modulate protein function and activity through conformational changes. Therefore, bioanalytical tools to screen new ligands have focused mainly on probing ligand-target interactions. These interactions have been evaluated by using solid-supported proteins, which provide advantages like increased protein stability and easier protein extraction from the reaction medium, which enables protein reuse. In some specific approaches, precisely in the ligand fishing assay, the bioanalytical method allows the ligands to be directly isolated from complex mixtures, including combinatorial libraries and natural products extracts without prior purification or fractionation steps. Most of these screening assays are based on liquid chromatography separation, and the binding events can be monitored through on-line or off-line methods. In the on-line approaches, solid supports containing the immobilized biological target are used as chromatographic columns most of the time. Several terms have been used to refer to such approaches, such as weak affinity chromatography, high-performance affinity chromatography, on-flow activity assays, and high-performance liquid affinity chromatography. On the other hand, in the off-line approaches, the binding event occurs outside the liquid chromatography system and may encompass affinity and activity-based assays in which the biological target is immobilized on magnetic particles or monolithic silica, among others. After the incubation step, the supernatant or the eluate from the binding assay is analyzed by liquid chromatography coupled to various detectors. Regardless of the selected bioanalytical approach, the use of solid supported proteins has significantly contributed to the development of automated and reliable screening methods that enable ligands to be isolated and characterized in complex matrixes without purification, thereby reducing costs and avoiding time-laborious steps. This review provides a critical overview of recently developed assays.https://www.frontiersin.org/article/10.3389/fchem.2019.00752/fullbioaffinity chromatographyligand screeningligand-target interactionszonal bioaffinity chromatographyfrontal bioaffinity chromatographyligand fishing
collection DOAJ
language English
format Article
sources DOAJ
author Marcela Cristina de Moraes
Carmen Lucia Cardoso
Quezia Bezerra Cass
spellingShingle Marcela Cristina de Moraes
Carmen Lucia Cardoso
Quezia Bezerra Cass
Solid-Supported Proteins in the Liquid Chromatography Domain to Probe Ligand-Target Interactions
Frontiers in Chemistry
bioaffinity chromatography
ligand screening
ligand-target interactions
zonal bioaffinity chromatography
frontal bioaffinity chromatography
ligand fishing
author_facet Marcela Cristina de Moraes
Carmen Lucia Cardoso
Quezia Bezerra Cass
author_sort Marcela Cristina de Moraes
title Solid-Supported Proteins in the Liquid Chromatography Domain to Probe Ligand-Target Interactions
title_short Solid-Supported Proteins in the Liquid Chromatography Domain to Probe Ligand-Target Interactions
title_full Solid-Supported Proteins in the Liquid Chromatography Domain to Probe Ligand-Target Interactions
title_fullStr Solid-Supported Proteins in the Liquid Chromatography Domain to Probe Ligand-Target Interactions
title_full_unstemmed Solid-Supported Proteins in the Liquid Chromatography Domain to Probe Ligand-Target Interactions
title_sort solid-supported proteins in the liquid chromatography domain to probe ligand-target interactions
publisher Frontiers Media S.A.
series Frontiers in Chemistry
issn 2296-2646
publishDate 2019-11-01
description Ligand-target interactions play a central role in drug discovery processes because these interactions are crucial in biological systems. Small molecules-proteins interactions can regulate and modulate protein function and activity through conformational changes. Therefore, bioanalytical tools to screen new ligands have focused mainly on probing ligand-target interactions. These interactions have been evaluated by using solid-supported proteins, which provide advantages like increased protein stability and easier protein extraction from the reaction medium, which enables protein reuse. In some specific approaches, precisely in the ligand fishing assay, the bioanalytical method allows the ligands to be directly isolated from complex mixtures, including combinatorial libraries and natural products extracts without prior purification or fractionation steps. Most of these screening assays are based on liquid chromatography separation, and the binding events can be monitored through on-line or off-line methods. In the on-line approaches, solid supports containing the immobilized biological target are used as chromatographic columns most of the time. Several terms have been used to refer to such approaches, such as weak affinity chromatography, high-performance affinity chromatography, on-flow activity assays, and high-performance liquid affinity chromatography. On the other hand, in the off-line approaches, the binding event occurs outside the liquid chromatography system and may encompass affinity and activity-based assays in which the biological target is immobilized on magnetic particles or monolithic silica, among others. After the incubation step, the supernatant or the eluate from the binding assay is analyzed by liquid chromatography coupled to various detectors. Regardless of the selected bioanalytical approach, the use of solid supported proteins has significantly contributed to the development of automated and reliable screening methods that enable ligands to be isolated and characterized in complex matrixes without purification, thereby reducing costs and avoiding time-laborious steps. This review provides a critical overview of recently developed assays.
topic bioaffinity chromatography
ligand screening
ligand-target interactions
zonal bioaffinity chromatography
frontal bioaffinity chromatography
ligand fishing
url https://www.frontiersin.org/article/10.3389/fchem.2019.00752/full
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AT queziabezerracass solidsupportedproteinsintheliquidchromatographydomaintoprobeligandtargetinteractions
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