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A diverse proteome is present and enzymatically active in metabolite extracts
by
Madaj, Zachary B.
, Sheldon, Ryan D.
, Wolfrum, Emily
, Isaguirre, Christine N.
, Ellis, Abigail E.
, Vincent, Michael P.
, Escobar Galvis, Martha L.
, House, Rachel (Rae) J.
, Williams, Kelsey S.
, Capan, Colt D.
, Lee, Hyoungjoo
, Johnson, Amy B.
, Soper-Hopper, Molly T.
, Castello, Carlos D.
in
631/45/320
/ 631/45/475
/ 82/58
/ Animals
/ Biological activity
/ Catalytic activity
/ Enzyme inhibitors
/ Glutathione
/ Glutathione - metabolism
/ Humanities and Social Sciences
/ Humans
/ Metabolites
/ Metabolome
/ Metabolomics
/ Metabolomics - methods
/ multidisciplinary
/ Organic solvents
/ Protein sources
/ Protein turnover
/ Proteins
/ Proteome - metabolism
/ Proteomes
/ Proteomics
/ Proteomics - methods
/ Science
/ Science (multidisciplinary)
/ Stable isotopes
/ Transaminase
/ Transaminases - metabolism
/ Workflow
2024
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A diverse proteome is present and enzymatically active in metabolite extracts
by
Madaj, Zachary B.
, Sheldon, Ryan D.
, Wolfrum, Emily
, Isaguirre, Christine N.
, Ellis, Abigail E.
, Vincent, Michael P.
, Escobar Galvis, Martha L.
, House, Rachel (Rae) J.
, Williams, Kelsey S.
, Capan, Colt D.
, Lee, Hyoungjoo
, Johnson, Amy B.
, Soper-Hopper, Molly T.
, Castello, Carlos D.
in
631/45/320
/ 631/45/475
/ 82/58
/ Animals
/ Biological activity
/ Catalytic activity
/ Enzyme inhibitors
/ Glutathione
/ Glutathione - metabolism
/ Humanities and Social Sciences
/ Humans
/ Metabolites
/ Metabolome
/ Metabolomics
/ Metabolomics - methods
/ multidisciplinary
/ Organic solvents
/ Protein sources
/ Protein turnover
/ Proteins
/ Proteome - metabolism
/ Proteomes
/ Proteomics
/ Proteomics - methods
/ Science
/ Science (multidisciplinary)
/ Stable isotopes
/ Transaminase
/ Transaminases - metabolism
/ Workflow
2024
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Do you wish to request the book?
A diverse proteome is present and enzymatically active in metabolite extracts
by
Madaj, Zachary B.
, Sheldon, Ryan D.
, Wolfrum, Emily
, Isaguirre, Christine N.
, Ellis, Abigail E.
, Vincent, Michael P.
, Escobar Galvis, Martha L.
, House, Rachel (Rae) J.
, Williams, Kelsey S.
, Capan, Colt D.
, Lee, Hyoungjoo
, Johnson, Amy B.
, Soper-Hopper, Molly T.
, Castello, Carlos D.
in
631/45/320
/ 631/45/475
/ 82/58
/ Animals
/ Biological activity
/ Catalytic activity
/ Enzyme inhibitors
/ Glutathione
/ Glutathione - metabolism
/ Humanities and Social Sciences
/ Humans
/ Metabolites
/ Metabolome
/ Metabolomics
/ Metabolomics - methods
/ multidisciplinary
/ Organic solvents
/ Protein sources
/ Protein turnover
/ Proteins
/ Proteome - metabolism
/ Proteomes
/ Proteomics
/ Proteomics - methods
/ Science
/ Science (multidisciplinary)
/ Stable isotopes
/ Transaminase
/ Transaminases - metabolism
/ Workflow
2024
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A diverse proteome is present and enzymatically active in metabolite extracts
Journal Article
A diverse proteome is present and enzymatically active in metabolite extracts
2024
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Overview
Metabolite extraction is the critical first-step in metabolomics experiments, where it is generally regarded to inactivate and remove proteins. Here, arising from efforts to improve extraction conditions for polar metabolomics, we discover a proteomic landscape of over 1000 proteins within metabolite extracts. This is a ubiquitous feature across several common extraction and sample types. By combining post-resuspension stable isotope addition and enzyme inhibitors, we demonstrate in-extract metabolite interconversions due to residual transaminase activity. We extend these findings with untargeted metabolomics where we observe extensive protein-mediated metabolite changes, including in-extract formation of glutamate dipeptide and depletion of total glutathione. Finally, we present a simple extraction workflow that integrates 3 kDa filtration for protein removal as a superior method for polar metabolomics. In this work, we uncover a previously unrecognized, protein-mediated source of observer effects in metabolomics experiments with broad-reaching implications across all research fields using metabolomics and molecular metabolism.
Metabolite extraction with organic solvents is assumed to remove/denature proteins. Here, the authors uncover a vast landscape of >1,000 proteins in metabolite extracts. These proteins can retain catalytic activity and drive post-extraction metabolite changes, obscuring biological interpretation.
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