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Fragment Binding to β-Secretase 1 without Catalytic Aspartate Interactions Identified via Orthogonal Screening Approaches

[Image: see text] An approach to identify β-secretase 1 (BACE1) fragment binders that do not interact with the catalytic aspartate dyad is presented. A ThermoFluor (thermal shift) and a fluorescence resonance energy transfer enzymatic screen on the soluble domain of BACE1, together with a surface pl...

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Autores principales: Rombouts, Frederik J. R., Alexander, Richard, Cleiren, Erna, De Groot, Alex, Carpentier, Michel, Dijkmans, Joyce, Fierens, Katleen, Masure, Stefan, Moechars, Diederik, Palomino-Schätzlein, Martina, Pineda-Lucena, Antonio, Trabanco, Andrés A., Van Glabbeek, Daan, Vos, Ann, Tresadern, Gary
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2017
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5472370/
https://www.ncbi.nlm.nih.gov/pubmed/28626832
http://dx.doi.org/10.1021/acsomega.6b00482
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author Rombouts, Frederik J. R.
Alexander, Richard
Cleiren, Erna
De Groot, Alex
Carpentier, Michel
Dijkmans, Joyce
Fierens, Katleen
Masure, Stefan
Moechars, Diederik
Palomino-Schätzlein, Martina
Pineda-Lucena, Antonio
Trabanco, Andrés A.
Van Glabbeek, Daan
Vos, Ann
Tresadern, Gary
author_facet Rombouts, Frederik J. R.
Alexander, Richard
Cleiren, Erna
De Groot, Alex
Carpentier, Michel
Dijkmans, Joyce
Fierens, Katleen
Masure, Stefan
Moechars, Diederik
Palomino-Schätzlein, Martina
Pineda-Lucena, Antonio
Trabanco, Andrés A.
Van Glabbeek, Daan
Vos, Ann
Tresadern, Gary
author_sort Rombouts, Frederik J. R.
collection PubMed
description [Image: see text] An approach to identify β-secretase 1 (BACE1) fragment binders that do not interact with the catalytic aspartate dyad is presented. A ThermoFluor (thermal shift) and a fluorescence resonance energy transfer enzymatic screen on the soluble domain of BACE1, together with a surface plasmon resonance (SPR) screen on the soluble domain of BACE1 and a mutant of one catalytic Asp (D32N), were run in parallel. Fragments that were active in at least two of these assays were further confirmed using one-dimensional NMR (WaterLOGSY) and SPR binding competition studies with peptidic inhibitor OM99-2. Protein-observed NMR (two-dimensional (15)N heteronuclear single-quantum coherence spectroscopy) and crystallographic studies with the soluble domain of BACE1 identified a unique and novel binding mode for compound 12, a fragment that still occupies the active site while not making any interactions with catalytic Asps. This novel approach of combining orthogonal fragment screening techniques, for both wild-type and mutant enzymes, as well as binding competition studies could be generalized to other targets to overcome undesired interaction motifs and as a hit-generation approach in highly constrained intellectual property space.
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spelling pubmed-54723702017-06-16 Fragment Binding to β-Secretase 1 without Catalytic Aspartate Interactions Identified via Orthogonal Screening Approaches Rombouts, Frederik J. R. Alexander, Richard Cleiren, Erna De Groot, Alex Carpentier, Michel Dijkmans, Joyce Fierens, Katleen Masure, Stefan Moechars, Diederik Palomino-Schätzlein, Martina Pineda-Lucena, Antonio Trabanco, Andrés A. Van Glabbeek, Daan Vos, Ann Tresadern, Gary ACS Omega [Image: see text] An approach to identify β-secretase 1 (BACE1) fragment binders that do not interact with the catalytic aspartate dyad is presented. A ThermoFluor (thermal shift) and a fluorescence resonance energy transfer enzymatic screen on the soluble domain of BACE1, together with a surface plasmon resonance (SPR) screen on the soluble domain of BACE1 and a mutant of one catalytic Asp (D32N), were run in parallel. Fragments that were active in at least two of these assays were further confirmed using one-dimensional NMR (WaterLOGSY) and SPR binding competition studies with peptidic inhibitor OM99-2. Protein-observed NMR (two-dimensional (15)N heteronuclear single-quantum coherence spectroscopy) and crystallographic studies with the soluble domain of BACE1 identified a unique and novel binding mode for compound 12, a fragment that still occupies the active site while not making any interactions with catalytic Asps. This novel approach of combining orthogonal fragment screening techniques, for both wild-type and mutant enzymes, as well as binding competition studies could be generalized to other targets to overcome undesired interaction motifs and as a hit-generation approach in highly constrained intellectual property space. American Chemical Society 2017-02-24 /pmc/articles/PMC5472370/ /pubmed/28626832 http://dx.doi.org/10.1021/acsomega.6b00482 Text en Copyright © 2017 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Rombouts, Frederik J. R.
Alexander, Richard
Cleiren, Erna
De Groot, Alex
Carpentier, Michel
Dijkmans, Joyce
Fierens, Katleen
Masure, Stefan
Moechars, Diederik
Palomino-Schätzlein, Martina
Pineda-Lucena, Antonio
Trabanco, Andrés A.
Van Glabbeek, Daan
Vos, Ann
Tresadern, Gary
Fragment Binding to β-Secretase 1 without Catalytic Aspartate Interactions Identified via Orthogonal Screening Approaches
title Fragment Binding to β-Secretase 1 without Catalytic Aspartate Interactions Identified via Orthogonal Screening Approaches
title_full Fragment Binding to β-Secretase 1 without Catalytic Aspartate Interactions Identified via Orthogonal Screening Approaches
title_fullStr Fragment Binding to β-Secretase 1 without Catalytic Aspartate Interactions Identified via Orthogonal Screening Approaches
title_full_unstemmed Fragment Binding to β-Secretase 1 without Catalytic Aspartate Interactions Identified via Orthogonal Screening Approaches
title_short Fragment Binding to β-Secretase 1 without Catalytic Aspartate Interactions Identified via Orthogonal Screening Approaches
title_sort fragment binding to β-secretase 1 without catalytic aspartate interactions identified via orthogonal screening approaches
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5472370/
https://www.ncbi.nlm.nih.gov/pubmed/28626832
http://dx.doi.org/10.1021/acsomega.6b00482
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