Cargando…

Ipomoeassin F Binds Sec61α to Inhibit Protein Translocation

[Image: see text] Ipomoeassin F is a potent natural cytotoxin that inhibits growth of many tumor cell lines with single-digit nanomolar potency. However, its biological and pharmacological properties have remained largely unexplored. Building upon our earlier achievements in total synthesis and medi...

Descripción completa

Detalles Bibliográficos
Autores principales: Zong, Guanghui, Hu, Zhijian, O’Keefe, Sarah, Tranter, Dale, Iannotti, Michael J., Baron, Ludivine, Hall, Belinda, Corfield, Katherine, Paatero, Anja O., Henderson, Mark J., Roboti, Peristera, Zhou, Jianhong, Sun, Xianwei, Govindarajan, Mugunthan, Rohde, Jason M., Blanchard, Nicolas, Simmonds, Rachel, Inglese, James, Du, Yuchun, Demangel, Caroline, High, Stephen, Paavilainen, Ville O., Shi, Wei Q.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2019
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6627486/
https://www.ncbi.nlm.nih.gov/pubmed/31059257
http://dx.doi.org/10.1021/jacs.8b13506
_version_ 1783434749634674688
author Zong, Guanghui
Hu, Zhijian
O’Keefe, Sarah
Tranter, Dale
Iannotti, Michael J.
Baron, Ludivine
Hall, Belinda
Corfield, Katherine
Paatero, Anja O.
Henderson, Mark J.
Roboti, Peristera
Zhou, Jianhong
Sun, Xianwei
Govindarajan, Mugunthan
Rohde, Jason M.
Blanchard, Nicolas
Simmonds, Rachel
Inglese, James
Du, Yuchun
Demangel, Caroline
High, Stephen
Paavilainen, Ville O.
Shi, Wei Q.
author_facet Zong, Guanghui
Hu, Zhijian
O’Keefe, Sarah
Tranter, Dale
Iannotti, Michael J.
Baron, Ludivine
Hall, Belinda
Corfield, Katherine
Paatero, Anja O.
Henderson, Mark J.
Roboti, Peristera
Zhou, Jianhong
Sun, Xianwei
Govindarajan, Mugunthan
Rohde, Jason M.
Blanchard, Nicolas
Simmonds, Rachel
Inglese, James
Du, Yuchun
Demangel, Caroline
High, Stephen
Paavilainen, Ville O.
Shi, Wei Q.
author_sort Zong, Guanghui
collection PubMed
description [Image: see text] Ipomoeassin F is a potent natural cytotoxin that inhibits growth of many tumor cell lines with single-digit nanomolar potency. However, its biological and pharmacological properties have remained largely unexplored. Building upon our earlier achievements in total synthesis and medicinal chemistry, we used chemical proteomics to identify Sec61α (protein transport protein Sec61 subunit alpha isoform 1), the pore-forming subunit of the Sec61 protein translocon, as a direct binding partner of ipomoeassin F in living cells. The interaction is specific and strong enough to survive lysis conditions, enabling a biotin analogue of ipomoeassin F to pull down Sec61α from live cells, yet it is also reversible, as judged by several experiments including fluorescent streptavidin staining, delayed competition in affinity pulldown, and inhibition of TNF biogenesis after washout. Sec61α forms the central subunit of the ER protein translocation complex, and the binding of ipomoeassin F results in a substantial, yet selective, inhibition of protein translocation in vitro and a broad ranging inhibition of protein secretion in live cells. Lastly, the unique resistance profile demonstrated by specific amino acid single-point mutations in Sec61α provides compelling evidence that Sec61α is the primary molecular target of ipomoeassin F and strongly suggests that the binding of this natural product to Sec61α is distinctive. Therefore, ipomoeassin F represents the first plant-derived, carbohydrate-based member of a novel structural class that offers new opportunities to explore Sec61α function and to further investigate its potential as a therapeutic target for drug discovery.
format Online
Article
Text
id pubmed-6627486
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-66274862019-07-16 Ipomoeassin F Binds Sec61α to Inhibit Protein Translocation Zong, Guanghui Hu, Zhijian O’Keefe, Sarah Tranter, Dale Iannotti, Michael J. Baron, Ludivine Hall, Belinda Corfield, Katherine Paatero, Anja O. Henderson, Mark J. Roboti, Peristera Zhou, Jianhong Sun, Xianwei Govindarajan, Mugunthan Rohde, Jason M. Blanchard, Nicolas Simmonds, Rachel Inglese, James Du, Yuchun Demangel, Caroline High, Stephen Paavilainen, Ville O. Shi, Wei Q. J Am Chem Soc [Image: see text] Ipomoeassin F is a potent natural cytotoxin that inhibits growth of many tumor cell lines with single-digit nanomolar potency. However, its biological and pharmacological properties have remained largely unexplored. Building upon our earlier achievements in total synthesis and medicinal chemistry, we used chemical proteomics to identify Sec61α (protein transport protein Sec61 subunit alpha isoform 1), the pore-forming subunit of the Sec61 protein translocon, as a direct binding partner of ipomoeassin F in living cells. The interaction is specific and strong enough to survive lysis conditions, enabling a biotin analogue of ipomoeassin F to pull down Sec61α from live cells, yet it is also reversible, as judged by several experiments including fluorescent streptavidin staining, delayed competition in affinity pulldown, and inhibition of TNF biogenesis after washout. Sec61α forms the central subunit of the ER protein translocation complex, and the binding of ipomoeassin F results in a substantial, yet selective, inhibition of protein translocation in vitro and a broad ranging inhibition of protein secretion in live cells. Lastly, the unique resistance profile demonstrated by specific amino acid single-point mutations in Sec61α provides compelling evidence that Sec61α is the primary molecular target of ipomoeassin F and strongly suggests that the binding of this natural product to Sec61α is distinctive. Therefore, ipomoeassin F represents the first plant-derived, carbohydrate-based member of a novel structural class that offers new opportunities to explore Sec61α function and to further investigate its potential as a therapeutic target for drug discovery. American Chemical Society 2019-05-06 2019-05-29 /pmc/articles/PMC6627486/ /pubmed/31059257 http://dx.doi.org/10.1021/jacs.8b13506 Text en Copyright © 2019 American Chemical Society This is an open access article published under a Creative Commons Attribution (CC-BY) License (http://pubs.acs.org/page/policy/authorchoice_ccby_termsofuse.html) , which permits unrestricted use, distribution and reproduction in any medium, provided the author and source are cited.
spellingShingle Zong, Guanghui
Hu, Zhijian
O’Keefe, Sarah
Tranter, Dale
Iannotti, Michael J.
Baron, Ludivine
Hall, Belinda
Corfield, Katherine
Paatero, Anja O.
Henderson, Mark J.
Roboti, Peristera
Zhou, Jianhong
Sun, Xianwei
Govindarajan, Mugunthan
Rohde, Jason M.
Blanchard, Nicolas
Simmonds, Rachel
Inglese, James
Du, Yuchun
Demangel, Caroline
High, Stephen
Paavilainen, Ville O.
Shi, Wei Q.
Ipomoeassin F Binds Sec61α to Inhibit Protein Translocation
title Ipomoeassin F Binds Sec61α to Inhibit Protein Translocation
title_full Ipomoeassin F Binds Sec61α to Inhibit Protein Translocation
title_fullStr Ipomoeassin F Binds Sec61α to Inhibit Protein Translocation
title_full_unstemmed Ipomoeassin F Binds Sec61α to Inhibit Protein Translocation
title_short Ipomoeassin F Binds Sec61α to Inhibit Protein Translocation
title_sort ipomoeassin f binds sec61α to inhibit protein translocation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6627486/
https://www.ncbi.nlm.nih.gov/pubmed/31059257
http://dx.doi.org/10.1021/jacs.8b13506
work_keys_str_mv AT zongguanghui ipomoeassinfbindssec61atoinhibitproteintranslocation
AT huzhijian ipomoeassinfbindssec61atoinhibitproteintranslocation
AT okeefesarah ipomoeassinfbindssec61atoinhibitproteintranslocation
AT tranterdale ipomoeassinfbindssec61atoinhibitproteintranslocation
AT iannottimichaelj ipomoeassinfbindssec61atoinhibitproteintranslocation
AT baronludivine ipomoeassinfbindssec61atoinhibitproteintranslocation
AT hallbelinda ipomoeassinfbindssec61atoinhibitproteintranslocation
AT corfieldkatherine ipomoeassinfbindssec61atoinhibitproteintranslocation
AT paateroanjao ipomoeassinfbindssec61atoinhibitproteintranslocation
AT hendersonmarkj ipomoeassinfbindssec61atoinhibitproteintranslocation
AT robotiperistera ipomoeassinfbindssec61atoinhibitproteintranslocation
AT zhoujianhong ipomoeassinfbindssec61atoinhibitproteintranslocation
AT sunxianwei ipomoeassinfbindssec61atoinhibitproteintranslocation
AT govindarajanmugunthan ipomoeassinfbindssec61atoinhibitproteintranslocation
AT rohdejasonm ipomoeassinfbindssec61atoinhibitproteintranslocation
AT blanchardnicolas ipomoeassinfbindssec61atoinhibitproteintranslocation
AT simmondsrachel ipomoeassinfbindssec61atoinhibitproteintranslocation
AT inglesejames ipomoeassinfbindssec61atoinhibitproteintranslocation
AT duyuchun ipomoeassinfbindssec61atoinhibitproteintranslocation
AT demangelcaroline ipomoeassinfbindssec61atoinhibitproteintranslocation
AT highstephen ipomoeassinfbindssec61atoinhibitproteintranslocation
AT paavilainenvilleo ipomoeassinfbindssec61atoinhibitproteintranslocation
AT shiweiq ipomoeassinfbindssec61atoinhibitproteintranslocation