Cargando…

Site-selective C–C modification of proteins at neutral pH using organocatalyst-mediated cross aldol ligations

The bioconjugation of proteins with small molecules has proved an invaluable strategy for probing and perturbing biological mechanisms. The general use of chemical methods for protein functionalisation can be limited however by the requirement for complicated reaction partners to be present in large...

Descripción completa

Detalles Bibliográficos
Autores principales: Spears, Richard J., Brabham, Robin L., Budhadev, Darshita, Keenan, Tessa, McKenna, Sophie, Walton, Julia, Brannigan, James. A., Brzozowski, A. Marek, Wilkinson, Anthony J., Plevin, Michael, Fascione, Martin A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6049525/
https://www.ncbi.nlm.nih.gov/pubmed/30061990
http://dx.doi.org/10.1039/c8sc01617h
_version_ 1783340232229257216
author Spears, Richard J.
Brabham, Robin L.
Budhadev, Darshita
Keenan, Tessa
McKenna, Sophie
Walton, Julia
Brannigan, James. A.
Brzozowski, A. Marek
Wilkinson, Anthony J.
Plevin, Michael
Fascione, Martin A.
author_facet Spears, Richard J.
Brabham, Robin L.
Budhadev, Darshita
Keenan, Tessa
McKenna, Sophie
Walton, Julia
Brannigan, James. A.
Brzozowski, A. Marek
Wilkinson, Anthony J.
Plevin, Michael
Fascione, Martin A.
author_sort Spears, Richard J.
collection PubMed
description The bioconjugation of proteins with small molecules has proved an invaluable strategy for probing and perturbing biological mechanisms. The general use of chemical methods for protein functionalisation can be limited however by the requirement for complicated reaction partners to be present in large excess, and harsh conditions which are incompatible with many protein scaffolds. Herein we describe a site-selective organocatalyst-mediated protein aldol ligation (OPAL) that affords stable carbon–carbon linked bioconjugates at neutral pH. OPAL enables rapid modification of proteins using simple aldehyde probes in minimal excess, and is utilised here in the affinity tagging of proteins in cell lysate. Furthermore we demonstrate that the β-hydroxy aldehyde OPAL product can be functionalised again at neutral pH in a tandem organocatalyst-mediated oxime ligation. This tandem strategy is showcased in the ‘chemical mimicry’ of a previously inaccessible natural dual post-translationally modified protein integral to the pathogenesis of the neglected tropical disease Leishmaniasis.
format Online
Article
Text
id pubmed-6049525
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-60495252018-07-30 Site-selective C–C modification of proteins at neutral pH using organocatalyst-mediated cross aldol ligations Spears, Richard J. Brabham, Robin L. Budhadev, Darshita Keenan, Tessa McKenna, Sophie Walton, Julia Brannigan, James. A. Brzozowski, A. Marek Wilkinson, Anthony J. Plevin, Michael Fascione, Martin A. Chem Sci Chemistry The bioconjugation of proteins with small molecules has proved an invaluable strategy for probing and perturbing biological mechanisms. The general use of chemical methods for protein functionalisation can be limited however by the requirement for complicated reaction partners to be present in large excess, and harsh conditions which are incompatible with many protein scaffolds. Herein we describe a site-selective organocatalyst-mediated protein aldol ligation (OPAL) that affords stable carbon–carbon linked bioconjugates at neutral pH. OPAL enables rapid modification of proteins using simple aldehyde probes in minimal excess, and is utilised here in the affinity tagging of proteins in cell lysate. Furthermore we demonstrate that the β-hydroxy aldehyde OPAL product can be functionalised again at neutral pH in a tandem organocatalyst-mediated oxime ligation. This tandem strategy is showcased in the ‘chemical mimicry’ of a previously inaccessible natural dual post-translationally modified protein integral to the pathogenesis of the neglected tropical disease Leishmaniasis. Royal Society of Chemistry 2018-05-31 /pmc/articles/PMC6049525/ /pubmed/30061990 http://dx.doi.org/10.1039/c8sc01617h Text en This journal is © The Royal Society of Chemistry 2018 http://creativecommons.org/licenses/by/3.0/ This article is freely available. This article is licensed under a Creative Commons Attribution 3.0 Unported Licence (CC BY 3.0)
spellingShingle Chemistry
Spears, Richard J.
Brabham, Robin L.
Budhadev, Darshita
Keenan, Tessa
McKenna, Sophie
Walton, Julia
Brannigan, James. A.
Brzozowski, A. Marek
Wilkinson, Anthony J.
Plevin, Michael
Fascione, Martin A.
Site-selective C–C modification of proteins at neutral pH using organocatalyst-mediated cross aldol ligations
title Site-selective C–C modification of proteins at neutral pH using organocatalyst-mediated cross aldol ligations
title_full Site-selective C–C modification of proteins at neutral pH using organocatalyst-mediated cross aldol ligations
title_fullStr Site-selective C–C modification of proteins at neutral pH using organocatalyst-mediated cross aldol ligations
title_full_unstemmed Site-selective C–C modification of proteins at neutral pH using organocatalyst-mediated cross aldol ligations
title_short Site-selective C–C modification of proteins at neutral pH using organocatalyst-mediated cross aldol ligations
title_sort site-selective c–c modification of proteins at neutral ph using organocatalyst-mediated cross aldol ligations
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6049525/
https://www.ncbi.nlm.nih.gov/pubmed/30061990
http://dx.doi.org/10.1039/c8sc01617h
work_keys_str_mv AT spearsrichardj siteselectiveccmodificationofproteinsatneutralphusingorganocatalystmediatedcrossaldolligations
AT brabhamrobinl siteselectiveccmodificationofproteinsatneutralphusingorganocatalystmediatedcrossaldolligations
AT budhadevdarshita siteselectiveccmodificationofproteinsatneutralphusingorganocatalystmediatedcrossaldolligations
AT keenantessa siteselectiveccmodificationofproteinsatneutralphusingorganocatalystmediatedcrossaldolligations
AT mckennasophie siteselectiveccmodificationofproteinsatneutralphusingorganocatalystmediatedcrossaldolligations
AT waltonjulia siteselectiveccmodificationofproteinsatneutralphusingorganocatalystmediatedcrossaldolligations
AT branniganjamesa siteselectiveccmodificationofproteinsatneutralphusingorganocatalystmediatedcrossaldolligations
AT brzozowskiamarek siteselectiveccmodificationofproteinsatneutralphusingorganocatalystmediatedcrossaldolligations
AT wilkinsonanthonyj siteselectiveccmodificationofproteinsatneutralphusingorganocatalystmediatedcrossaldolligations
AT plevinmichael siteselectiveccmodificationofproteinsatneutralphusingorganocatalystmediatedcrossaldolligations
AT fascionemartina siteselectiveccmodificationofproteinsatneutralphusingorganocatalystmediatedcrossaldolligations