Cargando…

GRP78/BiP/HSPA5/Dna K is a Universal Therapeutic Target for Human Disease

The chaperone GRP78/Dna K is conserved throughout evolution down to prokaryotes. The GRP78 inhibitor OSU-03012 (AR-12) interacted with sildenafil (Viagra) or tadalafil (Cialis) to rapidly reduce GRP78 levels in eukaryotes and as a single agent reduce Dna K levels in prokaryotes. Similar data with th...

Descripción completa

Detalles Bibliográficos
Autores principales: Booth, Laurence, Roberts, Jane L, Cash, Devin R, Tavallai, Seyedmehrad, Jean, Sophonie, Fidanza, Abigail, Cruz-Luna, Tanya, Siembiba, Paul, Cycon, Kelly A, Cornelissen, Cynthia N, Dent, Paul
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4402027/
https://www.ncbi.nlm.nih.gov/pubmed/25546329
http://dx.doi.org/10.1002/jcp.24919
_version_ 1782367219993280512
author Booth, Laurence
Roberts, Jane L
Cash, Devin R
Tavallai, Seyedmehrad
Jean, Sophonie
Fidanza, Abigail
Cruz-Luna, Tanya
Siembiba, Paul
Cycon, Kelly A
Cornelissen, Cynthia N
Dent, Paul
author_facet Booth, Laurence
Roberts, Jane L
Cash, Devin R
Tavallai, Seyedmehrad
Jean, Sophonie
Fidanza, Abigail
Cruz-Luna, Tanya
Siembiba, Paul
Cycon, Kelly A
Cornelissen, Cynthia N
Dent, Paul
author_sort Booth, Laurence
collection PubMed
description The chaperone GRP78/Dna K is conserved throughout evolution down to prokaryotes. The GRP78 inhibitor OSU-03012 (AR-12) interacted with sildenafil (Viagra) or tadalafil (Cialis) to rapidly reduce GRP78 levels in eukaryotes and as a single agent reduce Dna K levels in prokaryotes. Similar data with the drug combination were obtained for: HSP70, HSP90, GRP94, GRP58, HSP27, HSP40 and HSP60. OSU-03012/sildenafil treatment killed brain cancer stem cells and decreased the expression of: NPC1 and TIM1; LAMP1; and NTCP1, receptors for Ebola/Marburg/Hepatitis A, Lassa fever, and Hepatitis B viruses, respectively. Pre-treatment with OSU-03012/sildenafil reduced expression of the coxsakie and adenovirus receptor in parallel with it also reducing the ability of a serotype 5 adenovirus or coxsakie virus B4 to infect and to reproduce. Similar data were obtained using Chikungunya, Mumps, Measles, Rubella, RSV, CMV, and Influenza viruses. OSU-03012 as a single agent at clinically relevant concentrations killed laboratory generated antibiotic resistant E. coli and clinical isolate multi-drug resistant N. gonorrhoeae and MRSE which was in bacteria associated with reduced Dna K and Rec A expression. The PDE5 inhibitors sildenafil or tadalafil enhanced OSU-03012 killing in N. gonorrhoeae and MRSE and low marginally toxic doses of OSU-03012 could restore bacterial sensitivity in N. gonorrhoeae to multiple antibiotics. Thus, Dna K and bacterial phosphodiesterases are novel antibiotic targets, and inhibition of GRP78 is of therapeutic utility for cancer and also for bacterial and viral infections. J. Cell. Physiol. 230: 1661–1676, 2015. © 2014 The Authors. Journal of Cellular Physiology Published by Wiley Periodicals, Inc.
format Online
Article
Text
id pubmed-4402027
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Blackwell Publishing Ltd
record_format MEDLINE/PubMed
spelling pubmed-44020272015-04-22 GRP78/BiP/HSPA5/Dna K is a Universal Therapeutic Target for Human Disease Booth, Laurence Roberts, Jane L Cash, Devin R Tavallai, Seyedmehrad Jean, Sophonie Fidanza, Abigail Cruz-Luna, Tanya Siembiba, Paul Cycon, Kelly A Cornelissen, Cynthia N Dent, Paul J Cell Physiol Original Research Articles The chaperone GRP78/Dna K is conserved throughout evolution down to prokaryotes. The GRP78 inhibitor OSU-03012 (AR-12) interacted with sildenafil (Viagra) or tadalafil (Cialis) to rapidly reduce GRP78 levels in eukaryotes and as a single agent reduce Dna K levels in prokaryotes. Similar data with the drug combination were obtained for: HSP70, HSP90, GRP94, GRP58, HSP27, HSP40 and HSP60. OSU-03012/sildenafil treatment killed brain cancer stem cells and decreased the expression of: NPC1 and TIM1; LAMP1; and NTCP1, receptors for Ebola/Marburg/Hepatitis A, Lassa fever, and Hepatitis B viruses, respectively. Pre-treatment with OSU-03012/sildenafil reduced expression of the coxsakie and adenovirus receptor in parallel with it also reducing the ability of a serotype 5 adenovirus or coxsakie virus B4 to infect and to reproduce. Similar data were obtained using Chikungunya, Mumps, Measles, Rubella, RSV, CMV, and Influenza viruses. OSU-03012 as a single agent at clinically relevant concentrations killed laboratory generated antibiotic resistant E. coli and clinical isolate multi-drug resistant N. gonorrhoeae and MRSE which was in bacteria associated with reduced Dna K and Rec A expression. The PDE5 inhibitors sildenafil or tadalafil enhanced OSU-03012 killing in N. gonorrhoeae and MRSE and low marginally toxic doses of OSU-03012 could restore bacterial sensitivity in N. gonorrhoeae to multiple antibiotics. Thus, Dna K and bacterial phosphodiesterases are novel antibiotic targets, and inhibition of GRP78 is of therapeutic utility for cancer and also for bacterial and viral infections. J. Cell. Physiol. 230: 1661–1676, 2015. © 2014 The Authors. Journal of Cellular Physiology Published by Wiley Periodicals, Inc. Blackwell Publishing Ltd 2015-07 2014-12-24 /pmc/articles/PMC4402027/ /pubmed/25546329 http://dx.doi.org/10.1002/jcp.24919 Text en © 2014 The Authors. Journal of Cellular Physiology Published by Wiley Periodicals, Inc. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non-commercial and no modifications or adaptations are made.
spellingShingle Original Research Articles
Booth, Laurence
Roberts, Jane L
Cash, Devin R
Tavallai, Seyedmehrad
Jean, Sophonie
Fidanza, Abigail
Cruz-Luna, Tanya
Siembiba, Paul
Cycon, Kelly A
Cornelissen, Cynthia N
Dent, Paul
GRP78/BiP/HSPA5/Dna K is a Universal Therapeutic Target for Human Disease
title GRP78/BiP/HSPA5/Dna K is a Universal Therapeutic Target for Human Disease
title_full GRP78/BiP/HSPA5/Dna K is a Universal Therapeutic Target for Human Disease
title_fullStr GRP78/BiP/HSPA5/Dna K is a Universal Therapeutic Target for Human Disease
title_full_unstemmed GRP78/BiP/HSPA5/Dna K is a Universal Therapeutic Target for Human Disease
title_short GRP78/BiP/HSPA5/Dna K is a Universal Therapeutic Target for Human Disease
title_sort grp78/bip/hspa5/dna k is a universal therapeutic target for human disease
topic Original Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4402027/
https://www.ncbi.nlm.nih.gov/pubmed/25546329
http://dx.doi.org/10.1002/jcp.24919
work_keys_str_mv AT boothlaurence grp78biphspa5dnakisauniversaltherapeutictargetforhumandisease
AT robertsjanel grp78biphspa5dnakisauniversaltherapeutictargetforhumandisease
AT cashdevinr grp78biphspa5dnakisauniversaltherapeutictargetforhumandisease
AT tavallaiseyedmehrad grp78biphspa5dnakisauniversaltherapeutictargetforhumandisease
AT jeansophonie grp78biphspa5dnakisauniversaltherapeutictargetforhumandisease
AT fidanzaabigail grp78biphspa5dnakisauniversaltherapeutictargetforhumandisease
AT cruzlunatanya grp78biphspa5dnakisauniversaltherapeutictargetforhumandisease
AT siembibapaul grp78biphspa5dnakisauniversaltherapeutictargetforhumandisease
AT cyconkellya grp78biphspa5dnakisauniversaltherapeutictargetforhumandisease
AT cornelissencynthian grp78biphspa5dnakisauniversaltherapeutictargetforhumandisease
AT dentpaul grp78biphspa5dnakisauniversaltherapeutictargetforhumandisease