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PITPs as Targets for Selectively Interfering With Phosphoinositide Signaling in Cells

Sec14-like phosphatidylinositol transfer proteins (PITPs) integrate diverse territories of intracellular lipid metabolism with stimulated phosphatidylinositol-4-phosphate production, and are discriminating portals for interrogating phosphoinositide signaling. Yet, neither Sec14-like PITPs, nor PITPs...

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Autores principales: Nile, Aaron H., Tripathi, Ashutosh, Yuan, Peihua, Mousley, Carl J., Suresh, Sundari, Wallace, Iain Michael, Shah, Sweety D., Pohlhaus, Denise Teotico, Temple, Brenda, Nislow, Corey, Giaever, Guri, Tropsha, Alexander, Davis, Ronald W., St Onge, Robert P., Bankaitis, Vytas A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4059020/
https://www.ncbi.nlm.nih.gov/pubmed/24292071
http://dx.doi.org/10.1038/nchembio.1389
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author Nile, Aaron H.
Tripathi, Ashutosh
Yuan, Peihua
Mousley, Carl J.
Suresh, Sundari
Wallace, Iain Michael
Shah, Sweety D.
Pohlhaus, Denise Teotico
Temple, Brenda
Nislow, Corey
Giaever, Guri
Tropsha, Alexander
Davis, Ronald W.
St Onge, Robert P.
Bankaitis, Vytas A.
author_facet Nile, Aaron H.
Tripathi, Ashutosh
Yuan, Peihua
Mousley, Carl J.
Suresh, Sundari
Wallace, Iain Michael
Shah, Sweety D.
Pohlhaus, Denise Teotico
Temple, Brenda
Nislow, Corey
Giaever, Guri
Tropsha, Alexander
Davis, Ronald W.
St Onge, Robert P.
Bankaitis, Vytas A.
author_sort Nile, Aaron H.
collection PubMed
description Sec14-like phosphatidylinositol transfer proteins (PITPs) integrate diverse territories of intracellular lipid metabolism with stimulated phosphatidylinositol-4-phosphate production, and are discriminating portals for interrogating phosphoinositide signaling. Yet, neither Sec14-like PITPs, nor PITPs in general, have been exploited as targets for chemical inhibition for such purposes. Herein, we validate the first small molecule inhibitors (SMIs) of the yeast PITP Sec14. These SMIs are nitrophenyl(4-(2-methoxyphenyl)piperazin-1-yl)methanones (NPPMs), and are effective inhibitors in vitro and in vivo. We further establish Sec14 is the sole essential NPPM target in yeast, that NPPMs exhibit exquisite targeting specificities for Sec14 (relative to related Sec14-like PITPs), propose a mechanism for how NPPMs exert their inhibitory effects, and demonstrate NPPMs exhibit exquisite pathway selectivity in inhibiting phosphoinositide signaling in cells. These data deliver proof-of-concept that PITP-directed SMIs offer new and generally applicable avenues for intervening with phosphoinositide signaling pathways with selectivities superior to those afforded by contemporary lipid kinase-directed strategies.
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spelling pubmed-40590202014-07-01 PITPs as Targets for Selectively Interfering With Phosphoinositide Signaling in Cells Nile, Aaron H. Tripathi, Ashutosh Yuan, Peihua Mousley, Carl J. Suresh, Sundari Wallace, Iain Michael Shah, Sweety D. Pohlhaus, Denise Teotico Temple, Brenda Nislow, Corey Giaever, Guri Tropsha, Alexander Davis, Ronald W. St Onge, Robert P. Bankaitis, Vytas A. Nat Chem Biol Article Sec14-like phosphatidylinositol transfer proteins (PITPs) integrate diverse territories of intracellular lipid metabolism with stimulated phosphatidylinositol-4-phosphate production, and are discriminating portals for interrogating phosphoinositide signaling. Yet, neither Sec14-like PITPs, nor PITPs in general, have been exploited as targets for chemical inhibition for such purposes. Herein, we validate the first small molecule inhibitors (SMIs) of the yeast PITP Sec14. These SMIs are nitrophenyl(4-(2-methoxyphenyl)piperazin-1-yl)methanones (NPPMs), and are effective inhibitors in vitro and in vivo. We further establish Sec14 is the sole essential NPPM target in yeast, that NPPMs exhibit exquisite targeting specificities for Sec14 (relative to related Sec14-like PITPs), propose a mechanism for how NPPMs exert their inhibitory effects, and demonstrate NPPMs exhibit exquisite pathway selectivity in inhibiting phosphoinositide signaling in cells. These data deliver proof-of-concept that PITP-directed SMIs offer new and generally applicable avenues for intervening with phosphoinositide signaling pathways with selectivities superior to those afforded by contemporary lipid kinase-directed strategies. 2013-11-24 2014-01 /pmc/articles/PMC4059020/ /pubmed/24292071 http://dx.doi.org/10.1038/nchembio.1389 Text en Users may view, print, copy, download and 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
Nile, Aaron H.
Tripathi, Ashutosh
Yuan, Peihua
Mousley, Carl J.
Suresh, Sundari
Wallace, Iain Michael
Shah, Sweety D.
Pohlhaus, Denise Teotico
Temple, Brenda
Nislow, Corey
Giaever, Guri
Tropsha, Alexander
Davis, Ronald W.
St Onge, Robert P.
Bankaitis, Vytas A.
PITPs as Targets for Selectively Interfering With Phosphoinositide Signaling in Cells
title PITPs as Targets for Selectively Interfering With Phosphoinositide Signaling in Cells
title_full PITPs as Targets for Selectively Interfering With Phosphoinositide Signaling in Cells
title_fullStr PITPs as Targets for Selectively Interfering With Phosphoinositide Signaling in Cells
title_full_unstemmed PITPs as Targets for Selectively Interfering With Phosphoinositide Signaling in Cells
title_short PITPs as Targets for Selectively Interfering With Phosphoinositide Signaling in Cells
title_sort pitps as targets for selectively interfering with phosphoinositide signaling in cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4059020/
https://www.ncbi.nlm.nih.gov/pubmed/24292071
http://dx.doi.org/10.1038/nchembio.1389
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