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Inhibition of protein disulfide isomerase in glioblastoma causes marked downregulation of DNA repair and DNA damage response genes

Aberrant overexpression of endoplasmic reticulum (ER)-resident oxidoreductase protein disulfide isomerase (PDI) plays an important role in cancer progression. In this study, we demonstrate that PDI promotes glioblastoma (GBM) cell growth and describe a class of allosteric PDI inhibitors that are sel...

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Autores principales: Xu, Shili, Liu, Yajing, Yang, Kai, Wang, Hanxiao, Shergalis, Andrea, Kyani, Anahita, Bankhead, Armand, Tamura, Shuzo, Yang, Suhui, Wang, Xi, Wang, Chih-chen, Rehemtulla, Alnawaz, Ljungman, Mats, Neamati, Nouri
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6531306/
https://www.ncbi.nlm.nih.gov/pubmed/31149044
http://dx.doi.org/10.7150/thno.30621
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author Xu, Shili
Liu, Yajing
Yang, Kai
Wang, Hanxiao
Shergalis, Andrea
Kyani, Anahita
Bankhead, Armand
Tamura, Shuzo
Yang, Suhui
Wang, Xi
Wang, Chih-chen
Rehemtulla, Alnawaz
Ljungman, Mats
Neamati, Nouri
author_facet Xu, Shili
Liu, Yajing
Yang, Kai
Wang, Hanxiao
Shergalis, Andrea
Kyani, Anahita
Bankhead, Armand
Tamura, Shuzo
Yang, Suhui
Wang, Xi
Wang, Chih-chen
Rehemtulla, Alnawaz
Ljungman, Mats
Neamati, Nouri
author_sort Xu, Shili
collection PubMed
description Aberrant overexpression of endoplasmic reticulum (ER)-resident oxidoreductase protein disulfide isomerase (PDI) plays an important role in cancer progression. In this study, we demonstrate that PDI promotes glioblastoma (GBM) cell growth and describe a class of allosteric PDI inhibitors that are selective for PDI over other PDI family members. Methods: We performed a phenotypic screening triage campaign of over 20,000 diverse compounds to identify PDI inhibitors cytotoxic to cancer cells. From this screen, BAP2 emerged as a lead compound, and we assessed BAP2-PDI interactions with gel filtration, thiol-competition assays, and site-directed mutagenesis studies. To assess selectivity, we compared BAP2 activity across several PDI family members in the PDI reductase assay. Finally, we performed in vivo studies with a mouse xenograft model of GBM combining BAP2 and the standard of care (temozolomide and radiation), and identified affected gene pathways with nascent RNA sequencing (Bru-seq). Results: BAP2 and related analogs are novel PDI inhibitors that selectively inhibit PDIA1 and PDIp. Though BAP2 contains a weak Michael acceptor, interaction with PDI relies on Histidine 256 in the b' domain of PDI, suggesting allosteric binding. Furthermore, both in vitro and in vivo, BAP2 reduces cell and tumor growth. BAP2 alters the transcription of genes involved in the unfolded protein response, ER stress, apoptosis and DNA repair response. Conclusion: These results indicate that BAP2 has anti-tumor activity and the suppressive effect on DNA repair gene expression warrants combination with DNA damaging agents to treat GBM.
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spelling pubmed-65313062019-05-30 Inhibition of protein disulfide isomerase in glioblastoma causes marked downregulation of DNA repair and DNA damage response genes Xu, Shili Liu, Yajing Yang, Kai Wang, Hanxiao Shergalis, Andrea Kyani, Anahita Bankhead, Armand Tamura, Shuzo Yang, Suhui Wang, Xi Wang, Chih-chen Rehemtulla, Alnawaz Ljungman, Mats Neamati, Nouri Theranostics Research Paper Aberrant overexpression of endoplasmic reticulum (ER)-resident oxidoreductase protein disulfide isomerase (PDI) plays an important role in cancer progression. In this study, we demonstrate that PDI promotes glioblastoma (GBM) cell growth and describe a class of allosteric PDI inhibitors that are selective for PDI over other PDI family members. Methods: We performed a phenotypic screening triage campaign of over 20,000 diverse compounds to identify PDI inhibitors cytotoxic to cancer cells. From this screen, BAP2 emerged as a lead compound, and we assessed BAP2-PDI interactions with gel filtration, thiol-competition assays, and site-directed mutagenesis studies. To assess selectivity, we compared BAP2 activity across several PDI family members in the PDI reductase assay. Finally, we performed in vivo studies with a mouse xenograft model of GBM combining BAP2 and the standard of care (temozolomide and radiation), and identified affected gene pathways with nascent RNA sequencing (Bru-seq). Results: BAP2 and related analogs are novel PDI inhibitors that selectively inhibit PDIA1 and PDIp. Though BAP2 contains a weak Michael acceptor, interaction with PDI relies on Histidine 256 in the b' domain of PDI, suggesting allosteric binding. Furthermore, both in vitro and in vivo, BAP2 reduces cell and tumor growth. BAP2 alters the transcription of genes involved in the unfolded protein response, ER stress, apoptosis and DNA repair response. Conclusion: These results indicate that BAP2 has anti-tumor activity and the suppressive effect on DNA repair gene expression warrants combination with DNA damaging agents to treat GBM. Ivyspring International Publisher 2019-04-12 /pmc/articles/PMC6531306/ /pubmed/31149044 http://dx.doi.org/10.7150/thno.30621 Text en © Ivyspring International Publisher This is an open access article distributed under the terms of the Creative Commons Attribution (CC BY-NC) license (https://creativecommons.org/licenses/by-nc/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Xu, Shili
Liu, Yajing
Yang, Kai
Wang, Hanxiao
Shergalis, Andrea
Kyani, Anahita
Bankhead, Armand
Tamura, Shuzo
Yang, Suhui
Wang, Xi
Wang, Chih-chen
Rehemtulla, Alnawaz
Ljungman, Mats
Neamati, Nouri
Inhibition of protein disulfide isomerase in glioblastoma causes marked downregulation of DNA repair and DNA damage response genes
title Inhibition of protein disulfide isomerase in glioblastoma causes marked downregulation of DNA repair and DNA damage response genes
title_full Inhibition of protein disulfide isomerase in glioblastoma causes marked downregulation of DNA repair and DNA damage response genes
title_fullStr Inhibition of protein disulfide isomerase in glioblastoma causes marked downregulation of DNA repair and DNA damage response genes
title_full_unstemmed Inhibition of protein disulfide isomerase in glioblastoma causes marked downregulation of DNA repair and DNA damage response genes
title_short Inhibition of protein disulfide isomerase in glioblastoma causes marked downregulation of DNA repair and DNA damage response genes
title_sort inhibition of protein disulfide isomerase in glioblastoma causes marked downregulation of dna repair and dna damage response genes
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6531306/
https://www.ncbi.nlm.nih.gov/pubmed/31149044
http://dx.doi.org/10.7150/thno.30621
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