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Multi-kinase inhibitors can associate with heat shock proteins through their NH(2)-termini by which they suppress chaperone function

We performed proteomic studies using the GRP78 chaperone-inhibitor drug AR-12 (OSU-03012) as bait. Multiple additional chaperone and chaperone-associated proteins were shown to interact with AR-12, including: GRP75, HSP75, BAG2; HSP27; ULK-1; and thioredoxin. AR-12 down-regulated in situ immuno-fluo...

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Autores principales: Booth, Laurence, Shuch, Brian, Albers, Thomas, Roberts, Jane L., Tavallai, Mehrad, Proniuk, Stefan, Zukiwski, Alexander, Wang, Dasheng, Chen, Ching-Shih, Bottaro, Don, Ecroyd, Heath, Lebedyeva, Iryna O., Dent, Paul
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4914336/
https://www.ncbi.nlm.nih.gov/pubmed/26887051
http://dx.doi.org/10.18632/oncotarget.7349
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author Booth, Laurence
Shuch, Brian
Albers, Thomas
Roberts, Jane L.
Tavallai, Mehrad
Proniuk, Stefan
Zukiwski, Alexander
Wang, Dasheng
Chen, Ching-Shih
Bottaro, Don
Ecroyd, Heath
Lebedyeva, Iryna O.
Dent, Paul
author_facet Booth, Laurence
Shuch, Brian
Albers, Thomas
Roberts, Jane L.
Tavallai, Mehrad
Proniuk, Stefan
Zukiwski, Alexander
Wang, Dasheng
Chen, Ching-Shih
Bottaro, Don
Ecroyd, Heath
Lebedyeva, Iryna O.
Dent, Paul
author_sort Booth, Laurence
collection PubMed
description We performed proteomic studies using the GRP78 chaperone-inhibitor drug AR-12 (OSU-03012) as bait. Multiple additional chaperone and chaperone-associated proteins were shown to interact with AR-12, including: GRP75, HSP75, BAG2; HSP27; ULK-1; and thioredoxin. AR-12 down-regulated in situ immuno-fluorescence detection of ATP binding chaperones using antibodies directed against the NH(2)-termini of the proteins but only weakly reduced detection using antibodies directed against the central and COOH portions of the proteins. Traditional SDS-PAGE and western blotting assessment methods did not exhibit any alterations in chaperone detection. AR-12 altered the sub-cellular distribution of chaperone proteins, abolishing their punctate speckled patterning concomitant with changes in protein co-localization. AR-12 inhibited chaperone ATPase activity, which was enhanced by sildenafil; inhibited chaperone – chaperone and chaperone – client interactions; and docked in silico with the ATPase domains of HSP90 and of HSP70. AR-12 combined with sildenafil in a GRP78 plus HSP27 –dependent fashion to profoundly activate an eIF2α/ATF4/CHOP/Beclin1 pathway in parallel with inactivating mTOR and increasing ATG13 phosphorylation, collectively resulting in formation of punctate toxic autophagosomes. Over-expression of [GRP78 and HSP27] prevented: AR-12 –induced activation of ER stress signaling and maintained mTOR activity; AR-12 –mediated down-regulation of thioredoxin, MCL-1 and c-FLIP-s; and preserved tumor cell viability. Thus the inhibition of chaperone protein functions by AR-12 and by multi-kinase inhibitors very likely explains why these agents have anti-tumor effects in multiple genetically diverse tumor cell types.
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spelling pubmed-49143362016-07-11 Multi-kinase inhibitors can associate with heat shock proteins through their NH(2)-termini by which they suppress chaperone function Booth, Laurence Shuch, Brian Albers, Thomas Roberts, Jane L. Tavallai, Mehrad Proniuk, Stefan Zukiwski, Alexander Wang, Dasheng Chen, Ching-Shih Bottaro, Don Ecroyd, Heath Lebedyeva, Iryna O. Dent, Paul Oncotarget Research Paper We performed proteomic studies using the GRP78 chaperone-inhibitor drug AR-12 (OSU-03012) as bait. Multiple additional chaperone and chaperone-associated proteins were shown to interact with AR-12, including: GRP75, HSP75, BAG2; HSP27; ULK-1; and thioredoxin. AR-12 down-regulated in situ immuno-fluorescence detection of ATP binding chaperones using antibodies directed against the NH(2)-termini of the proteins but only weakly reduced detection using antibodies directed against the central and COOH portions of the proteins. Traditional SDS-PAGE and western blotting assessment methods did not exhibit any alterations in chaperone detection. AR-12 altered the sub-cellular distribution of chaperone proteins, abolishing their punctate speckled patterning concomitant with changes in protein co-localization. AR-12 inhibited chaperone ATPase activity, which was enhanced by sildenafil; inhibited chaperone – chaperone and chaperone – client interactions; and docked in silico with the ATPase domains of HSP90 and of HSP70. AR-12 combined with sildenafil in a GRP78 plus HSP27 –dependent fashion to profoundly activate an eIF2α/ATF4/CHOP/Beclin1 pathway in parallel with inactivating mTOR and increasing ATG13 phosphorylation, collectively resulting in formation of punctate toxic autophagosomes. Over-expression of [GRP78 and HSP27] prevented: AR-12 –induced activation of ER stress signaling and maintained mTOR activity; AR-12 –mediated down-regulation of thioredoxin, MCL-1 and c-FLIP-s; and preserved tumor cell viability. Thus the inhibition of chaperone protein functions by AR-12 and by multi-kinase inhibitors very likely explains why these agents have anti-tumor effects in multiple genetically diverse tumor cell types. Impact Journals LLC 2016-02-12 /pmc/articles/PMC4914336/ /pubmed/26887051 http://dx.doi.org/10.18632/oncotarget.7349 Text en Copyright: © 2016 Booth et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Booth, Laurence
Shuch, Brian
Albers, Thomas
Roberts, Jane L.
Tavallai, Mehrad
Proniuk, Stefan
Zukiwski, Alexander
Wang, Dasheng
Chen, Ching-Shih
Bottaro, Don
Ecroyd, Heath
Lebedyeva, Iryna O.
Dent, Paul
Multi-kinase inhibitors can associate with heat shock proteins through their NH(2)-termini by which they suppress chaperone function
title Multi-kinase inhibitors can associate with heat shock proteins through their NH(2)-termini by which they suppress chaperone function
title_full Multi-kinase inhibitors can associate with heat shock proteins through their NH(2)-termini by which they suppress chaperone function
title_fullStr Multi-kinase inhibitors can associate with heat shock proteins through their NH(2)-termini by which they suppress chaperone function
title_full_unstemmed Multi-kinase inhibitors can associate with heat shock proteins through their NH(2)-termini by which they suppress chaperone function
title_short Multi-kinase inhibitors can associate with heat shock proteins through their NH(2)-termini by which they suppress chaperone function
title_sort multi-kinase inhibitors can associate with heat shock proteins through their nh(2)-termini by which they suppress chaperone function
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4914336/
https://www.ncbi.nlm.nih.gov/pubmed/26887051
http://dx.doi.org/10.18632/oncotarget.7349
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