Cargando…

Chemoproteomic profiling of kinases in live cells using electrophilic sulfonyl triazole probes

Sulfonyl-triazoles are a new class of electrophiles that mediate covalent reaction with tyrosine residues on proteins through sulfur-triazole exchange (SuTEx) chemistry. Recent studies demonstrate the broad utility and tunability of SuTEx chemistry for chemical proteomics and protein ligand discover...

Descripción completa

Detalles Bibliográficos
Autores principales: Huang, Tao, Hosseinibarkooie, Seyyedmohsen, Borne, Adam L., Granade, Mitchell E., Brulet, Jeffrey W., Harris, Thurl E., Ferris, Heather A., Hsu, Ku-Lung
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8179411/
https://www.ncbi.nlm.nih.gov/pubmed/34164099
http://dx.doi.org/10.1039/d0sc06623k
_version_ 1783703775187304448
author Huang, Tao
Hosseinibarkooie, Seyyedmohsen
Borne, Adam L.
Granade, Mitchell E.
Brulet, Jeffrey W.
Harris, Thurl E.
Ferris, Heather A.
Hsu, Ku-Lung
author_facet Huang, Tao
Hosseinibarkooie, Seyyedmohsen
Borne, Adam L.
Granade, Mitchell E.
Brulet, Jeffrey W.
Harris, Thurl E.
Ferris, Heather A.
Hsu, Ku-Lung
author_sort Huang, Tao
collection PubMed
description Sulfonyl-triazoles are a new class of electrophiles that mediate covalent reaction with tyrosine residues on proteins through sulfur-triazole exchange (SuTEx) chemistry. Recent studies demonstrate the broad utility and tunability of SuTEx chemistry for chemical proteomics and protein ligand discovery. Here, we present a strategy for mapping protein interaction networks of structurally complex binding elements using functionalized SuTEx probes. We show that the triazole leaving group (LG) can serve as a releasable linker for embedding hydrophobic fragments to direct molecular recognition while permitting efficient proteome-wide identification of binding sites in live cells. We synthesized a series of SuTEx probes functionalized with a lipid kinase fragment binder for discovery of ligandable tyrosines residing in catalytic and regulatory domains of protein and metabolic kinases in live cells. We performed competition studies with kinase inhibitors and substrates to demonstrate that probe binding is occurring in an activity-dependent manner. Our functional studies led to discovery of probe-modified sites within the C2 domain that were important for downregulation of protein kinase C-alpha in response to phorbol ester activation. Our proof of concept studies highlight the triazole LG of SuTEx probes as a traceless linker for locating protein binding sites targeted by complex recognition elements in live cells.
format Online
Article
Text
id pubmed-8179411
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-81794112021-06-22 Chemoproteomic profiling of kinases in live cells using electrophilic sulfonyl triazole probes Huang, Tao Hosseinibarkooie, Seyyedmohsen Borne, Adam L. Granade, Mitchell E. Brulet, Jeffrey W. Harris, Thurl E. Ferris, Heather A. Hsu, Ku-Lung Chem Sci Chemistry Sulfonyl-triazoles are a new class of electrophiles that mediate covalent reaction with tyrosine residues on proteins through sulfur-triazole exchange (SuTEx) chemistry. Recent studies demonstrate the broad utility and tunability of SuTEx chemistry for chemical proteomics and protein ligand discovery. Here, we present a strategy for mapping protein interaction networks of structurally complex binding elements using functionalized SuTEx probes. We show that the triazole leaving group (LG) can serve as a releasable linker for embedding hydrophobic fragments to direct molecular recognition while permitting efficient proteome-wide identification of binding sites in live cells. We synthesized a series of SuTEx probes functionalized with a lipid kinase fragment binder for discovery of ligandable tyrosines residing in catalytic and regulatory domains of protein and metabolic kinases in live cells. We performed competition studies with kinase inhibitors and substrates to demonstrate that probe binding is occurring in an activity-dependent manner. Our functional studies led to discovery of probe-modified sites within the C2 domain that were important for downregulation of protein kinase C-alpha in response to phorbol ester activation. Our proof of concept studies highlight the triazole LG of SuTEx probes as a traceless linker for locating protein binding sites targeted by complex recognition elements in live cells. The Royal Society of Chemistry 2021-01-21 /pmc/articles/PMC8179411/ /pubmed/34164099 http://dx.doi.org/10.1039/d0sc06623k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Huang, Tao
Hosseinibarkooie, Seyyedmohsen
Borne, Adam L.
Granade, Mitchell E.
Brulet, Jeffrey W.
Harris, Thurl E.
Ferris, Heather A.
Hsu, Ku-Lung
Chemoproteomic profiling of kinases in live cells using electrophilic sulfonyl triazole probes
title Chemoproteomic profiling of kinases in live cells using electrophilic sulfonyl triazole probes
title_full Chemoproteomic profiling of kinases in live cells using electrophilic sulfonyl triazole probes
title_fullStr Chemoproteomic profiling of kinases in live cells using electrophilic sulfonyl triazole probes
title_full_unstemmed Chemoproteomic profiling of kinases in live cells using electrophilic sulfonyl triazole probes
title_short Chemoproteomic profiling of kinases in live cells using electrophilic sulfonyl triazole probes
title_sort chemoproteomic profiling of kinases in live cells using electrophilic sulfonyl triazole probes
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8179411/
https://www.ncbi.nlm.nih.gov/pubmed/34164099
http://dx.doi.org/10.1039/d0sc06623k
work_keys_str_mv AT huangtao chemoproteomicprofilingofkinasesinlivecellsusingelectrophilicsulfonyltriazoleprobes
AT hosseinibarkooieseyyedmohsen chemoproteomicprofilingofkinasesinlivecellsusingelectrophilicsulfonyltriazoleprobes
AT borneadaml chemoproteomicprofilingofkinasesinlivecellsusingelectrophilicsulfonyltriazoleprobes
AT granademitchelle chemoproteomicprofilingofkinasesinlivecellsusingelectrophilicsulfonyltriazoleprobes
AT bruletjeffreyw chemoproteomicprofilingofkinasesinlivecellsusingelectrophilicsulfonyltriazoleprobes
AT harristhurle chemoproteomicprofilingofkinasesinlivecellsusingelectrophilicsulfonyltriazoleprobes
AT ferrisheathera chemoproteomicprofilingofkinasesinlivecellsusingelectrophilicsulfonyltriazoleprobes
AT hsukulung chemoproteomicprofilingofkinasesinlivecellsusingelectrophilicsulfonyltriazoleprobes