Cargando…

Mass spectrometry captures off-target drug binding and provides mechanistic insights into the human metalloprotease ZMPSTE24

Off-target binding of hydrophobic drugs can lead to unwanted side effects, either through specific or nonspecific binding to unintended membrane protein targets; however, distinguishing the binding of drugs to membrane proteins from that of detergents, lipids and cofactors is challenging. Here we us...

Descripción completa

Detalles Bibliográficos
Autores principales: Mehmood, Shahid, Marcoux, Julien, Gault, Joseph, Quigley, Andrew, Michaelis, Susan, Young, Stephen G., Carpenter, Elisabeth P., Robinson, Carol V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5123592/
https://www.ncbi.nlm.nih.gov/pubmed/27874871
http://dx.doi.org/10.1038/nchem.2591
_version_ 1782469765544017920
author Mehmood, Shahid
Marcoux, Julien
Gault, Joseph
Quigley, Andrew
Michaelis, Susan
Young, Stephen G.
Carpenter, Elisabeth P.
Robinson, Carol V.
author_facet Mehmood, Shahid
Marcoux, Julien
Gault, Joseph
Quigley, Andrew
Michaelis, Susan
Young, Stephen G.
Carpenter, Elisabeth P.
Robinson, Carol V.
author_sort Mehmood, Shahid
collection PubMed
description Off-target binding of hydrophobic drugs can lead to unwanted side effects, either through specific or nonspecific binding to unintended membrane protein targets; however, distinguishing the binding of drugs to membrane proteins from that of detergents, lipids and cofactors is challenging. Here we use high-resolution mass spectrometry to study the effects of HIV protease inhibitors on the human zinc metalloprotease ZMPSTE24. This intramembrane protease plays a major role in converting prelamin A to mature lamin A. We monitored proteolysis of farnesylated prelamin A peptide by ZMPSTE24 and unexpectedly found retention of the C-terminal peptide product with the enzyme. We also resolved binding of zinc, lipids, and HIV protease inhibitors and showed that drug binding blocked prelamin A peptide cleavage and conferred stability to ZMPSTE24. Our results not only have relevance for the progeria-like side effects of certain HIV protease inhibitor drugs but also highlight new approaches for documenting off-target drug binding.
format Online
Article
Text
id pubmed-5123592
institution National Center for Biotechnology Information
language English
publishDate 2016
record_format MEDLINE/PubMed
spelling pubmed-51235922017-02-15 Mass spectrometry captures off-target drug binding and provides mechanistic insights into the human metalloprotease ZMPSTE24 Mehmood, Shahid Marcoux, Julien Gault, Joseph Quigley, Andrew Michaelis, Susan Young, Stephen G. Carpenter, Elisabeth P. Robinson, Carol V. Nat Chem Article Off-target binding of hydrophobic drugs can lead to unwanted side effects, either through specific or nonspecific binding to unintended membrane protein targets; however, distinguishing the binding of drugs to membrane proteins from that of detergents, lipids and cofactors is challenging. Here we use high-resolution mass spectrometry to study the effects of HIV protease inhibitors on the human zinc metalloprotease ZMPSTE24. This intramembrane protease plays a major role in converting prelamin A to mature lamin A. We monitored proteolysis of farnesylated prelamin A peptide by ZMPSTE24 and unexpectedly found retention of the C-terminal peptide product with the enzyme. We also resolved binding of zinc, lipids, and HIV protease inhibitors and showed that drug binding blocked prelamin A peptide cleavage and conferred stability to ZMPSTE24. Our results not only have relevance for the progeria-like side effects of certain HIV protease inhibitor drugs but also highlight new approaches for documenting off-target drug binding. 2016-08-15 2016-12 /pmc/articles/PMC5123592/ /pubmed/27874871 http://dx.doi.org/10.1038/nchem.2591 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Mehmood, Shahid
Marcoux, Julien
Gault, Joseph
Quigley, Andrew
Michaelis, Susan
Young, Stephen G.
Carpenter, Elisabeth P.
Robinson, Carol V.
Mass spectrometry captures off-target drug binding and provides mechanistic insights into the human metalloprotease ZMPSTE24
title Mass spectrometry captures off-target drug binding and provides mechanistic insights into the human metalloprotease ZMPSTE24
title_full Mass spectrometry captures off-target drug binding and provides mechanistic insights into the human metalloprotease ZMPSTE24
title_fullStr Mass spectrometry captures off-target drug binding and provides mechanistic insights into the human metalloprotease ZMPSTE24
title_full_unstemmed Mass spectrometry captures off-target drug binding and provides mechanistic insights into the human metalloprotease ZMPSTE24
title_short Mass spectrometry captures off-target drug binding and provides mechanistic insights into the human metalloprotease ZMPSTE24
title_sort mass spectrometry captures off-target drug binding and provides mechanistic insights into the human metalloprotease zmpste24
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5123592/
https://www.ncbi.nlm.nih.gov/pubmed/27874871
http://dx.doi.org/10.1038/nchem.2591
work_keys_str_mv AT mehmoodshahid massspectrometrycapturesofftargetdrugbindingandprovidesmechanisticinsightsintothehumanmetalloproteasezmpste24
AT marcouxjulien massspectrometrycapturesofftargetdrugbindingandprovidesmechanisticinsightsintothehumanmetalloproteasezmpste24
AT gaultjoseph massspectrometrycapturesofftargetdrugbindingandprovidesmechanisticinsightsintothehumanmetalloproteasezmpste24
AT quigleyandrew massspectrometrycapturesofftargetdrugbindingandprovidesmechanisticinsightsintothehumanmetalloproteasezmpste24
AT michaelissusan massspectrometrycapturesofftargetdrugbindingandprovidesmechanisticinsightsintothehumanmetalloproteasezmpste24
AT youngstepheng massspectrometrycapturesofftargetdrugbindingandprovidesmechanisticinsightsintothehumanmetalloproteasezmpste24
AT carpenterelisabethp massspectrometrycapturesofftargetdrugbindingandprovidesmechanisticinsightsintothehumanmetalloproteasezmpste24
AT robinsoncarolv massspectrometrycapturesofftargetdrugbindingandprovidesmechanisticinsightsintothehumanmetalloproteasezmpste24