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A Paal–Knorr agent for chemoproteomic profiling of targets of isoketals in cells

Natural systems produce various γ-dicarbonyl-bearing compounds that can covalently modify lysine in protein targets via the classic Paal–Knorr reaction. Among them is a unique class of lipid-derived electrophiles – isoketals that exhibit high chemical reactivity and critical biological functions. Ho...

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Autores principales: Wang, Min-Ran, He, Jing-Yang, He, Ji-Xiang, Liu, Ke-Ke, Yang, Jing
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/PMC8580055/
https://www.ncbi.nlm.nih.gov/pubmed/34881007
http://dx.doi.org/10.1039/d1sc02230j
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author Wang, Min-Ran
He, Jing-Yang
He, Ji-Xiang
Liu, Ke-Ke
Yang, Jing
author_facet Wang, Min-Ran
He, Jing-Yang
He, Ji-Xiang
Liu, Ke-Ke
Yang, Jing
author_sort Wang, Min-Ran
collection PubMed
description Natural systems produce various γ-dicarbonyl-bearing compounds that can covalently modify lysine in protein targets via the classic Paal–Knorr reaction. Among them is a unique class of lipid-derived electrophiles – isoketals that exhibit high chemical reactivity and critical biological functions. However, their target selectivity and profiles in complex proteomes remain unknown. Here we report a Paal–Knorr agent, 4-oxonon-8-ynal (herein termed ONAyne), for surveying the reactivity and selectivity of the γ-dicarbonyl warhead in biological systems. Using an unbiased open-search strategy, we demonstrated the lysine specificity of ONAyne on a proteome-wide scale and characterized six probe-derived modifications, including the initial pyrrole adduct and its oxidative products (i.e., lactam and hydroxylactam adducts), an enlactam adduct from dehydration of hydroxylactam, and two chemotypes formed in the presence of endogenous formaldehyde (i.e., fulvene and aldehyde adducts). Furthermore, combined with quantitative chemoproteomics in a competitive format, ONAyne permitted global, in situ, and site-specific profiling of targeted lysine residues of two specific isomers of isoketals, levuglandin (LG) D2 and E2. The functional analyses reveal that LG-derived adduction drives inhibition of malate dehydrogenase MDH2 and exhibits a crosstalk with two epigenetic marks on histone H2B in macrophages. Our approach should be broadly useful for target profiling of bioactive γ-dicarbonyls in diverse biological contexts.
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spelling pubmed-85800552021-12-07 A Paal–Knorr agent for chemoproteomic profiling of targets of isoketals in cells Wang, Min-Ran He, Jing-Yang He, Ji-Xiang Liu, Ke-Ke Yang, Jing Chem Sci Chemistry Natural systems produce various γ-dicarbonyl-bearing compounds that can covalently modify lysine in protein targets via the classic Paal–Knorr reaction. Among them is a unique class of lipid-derived electrophiles – isoketals that exhibit high chemical reactivity and critical biological functions. However, their target selectivity and profiles in complex proteomes remain unknown. Here we report a Paal–Knorr agent, 4-oxonon-8-ynal (herein termed ONAyne), for surveying the reactivity and selectivity of the γ-dicarbonyl warhead in biological systems. Using an unbiased open-search strategy, we demonstrated the lysine specificity of ONAyne on a proteome-wide scale and characterized six probe-derived modifications, including the initial pyrrole adduct and its oxidative products (i.e., lactam and hydroxylactam adducts), an enlactam adduct from dehydration of hydroxylactam, and two chemotypes formed in the presence of endogenous formaldehyde (i.e., fulvene and aldehyde adducts). Furthermore, combined with quantitative chemoproteomics in a competitive format, ONAyne permitted global, in situ, and site-specific profiling of targeted lysine residues of two specific isomers of isoketals, levuglandin (LG) D2 and E2. The functional analyses reveal that LG-derived adduction drives inhibition of malate dehydrogenase MDH2 and exhibits a crosstalk with two epigenetic marks on histone H2B in macrophages. Our approach should be broadly useful for target profiling of bioactive γ-dicarbonyls in diverse biological contexts. The Royal Society of Chemistry 2021-10-15 /pmc/articles/PMC8580055/ /pubmed/34881007 http://dx.doi.org/10.1039/d1sc02230j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Wang, Min-Ran
He, Jing-Yang
He, Ji-Xiang
Liu, Ke-Ke
Yang, Jing
A Paal–Knorr agent for chemoproteomic profiling of targets of isoketals in cells
title A Paal–Knorr agent for chemoproteomic profiling of targets of isoketals in cells
title_full A Paal–Knorr agent for chemoproteomic profiling of targets of isoketals in cells
title_fullStr A Paal–Knorr agent for chemoproteomic profiling of targets of isoketals in cells
title_full_unstemmed A Paal–Knorr agent for chemoproteomic profiling of targets of isoketals in cells
title_short A Paal–Knorr agent for chemoproteomic profiling of targets of isoketals in cells
title_sort paal–knorr agent for chemoproteomic profiling of targets of isoketals in cells
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8580055/
https://www.ncbi.nlm.nih.gov/pubmed/34881007
http://dx.doi.org/10.1039/d1sc02230j
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