Targeting the unfolded protein response in glioblastoma cells with the fusion protein EGF-SubA
Rapidly growing tumors require efficient means to allow them to adapt to fluctuating microenvironments consisting of hypoxia, nutrient deprivation, and acidosis. The unfolded protein response (UPR) represents a defense mechanism allowing cells to respond to these adverse conditions. The chaperone pr...
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description | Rapidly growing tumors require efficient means to allow them to adapt to fluctuating microenvironments consisting of hypoxia, nutrient deprivation, and acidosis. The unfolded protein response (UPR) represents a defense mechanism allowing cells to respond to these adverse conditions. The chaperone protein GRP78 serves as a master UPR regulator that is aberrantly expressed in a variety of cancers, including glioma. Therefore, cancer cells may be particularly reliant upon the adaptive mechanisms offered by the UPR and targeting GRP78 may represent a unique therapeutic strategy. Here we report that diffuse expression of GRP78 protein is present in Grade III-IV, but not Grade I-II glioma. To determine the role GRP78 plays in glioblastoma tumorigenesis, we explored the anti-tumor activity of the novel fusion protein EGF-SubA, which combines EGF with the cytotoxin SubA that has been recently shown to selectively cleave GRP78. EGF-SubA demonstrated potent tumor-specific proteolytic activity and cytotoxicity in glioblastoma lines and potentiated the anti-tumor activity of both temozolomide and ionizing radiation. To determine if the tumor microenvironment influences EGF-SubA activity, we maintained cells in acidic conditions that led to both UPR activation and increased EGF-SubA induced cytotoxicity. EGF-SubA was well tolerated in mice and led to a significant tumor growth delay in a glioma xenograft mouse model. The UPR is emerging as an important adaptive pathway contributing to glioma tumorigenesis. Targeting its primary mediator, the chaperone protein GRP78, through specific, proteolytic cleavage with the immunotoxin EGF-SubA represents a novel and promising multi-targeted approach to cancer therapy. |
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The unfolded protein response (UPR) represents a defense mechanism allowing cells to respond to these adverse conditions. The chaperone protein GRP78 serves as a master UPR regulator that is aberrantly expressed in a variety of cancers, including glioma. Therefore, cancer cells may be particularly reliant upon the adaptive mechanisms offered by the UPR and targeting GRP78 may represent a unique therapeutic strategy. Here we report that diffuse expression of GRP78 protein is present in Grade III-IV, but not Grade I-II glioma. To determine the role GRP78 plays in glioblastoma tumorigenesis, we explored the anti-tumor activity of the novel fusion protein EGF-SubA, which combines EGF with the cytotoxin SubA that has been recently shown to selectively cleave GRP78. EGF-SubA demonstrated potent tumor-specific proteolytic activity and cytotoxicity in glioblastoma lines and potentiated the anti-tumor activity of both temozolomide and ionizing radiation. To determine if the tumor microenvironment influences EGF-SubA activity, we maintained cells in acidic conditions that led to both UPR activation and increased EGF-SubA induced cytotoxicity. EGF-SubA was well tolerated in mice and led to a significant tumor growth delay in a glioma xenograft mouse model. The UPR is emerging as an important adaptive pathway contributing to glioma tumorigenesis. Targeting its primary mediator, the chaperone protein GRP78, through specific, proteolytic cleavage with the immunotoxin EGF-SubA represents a novel and promising multi-targeted approach to cancer therapy.</description><identifier>ISSN: 1932-6203</identifier><identifier>EISSN: 1932-6203</identifier><identifier>DOI: 10.1371/journal.pone.0052265</identifier><identifier>PMID: 23284962</identifier><language>eng</language><publisher>United States: Public Library of Science</publisher><subject>Aberration ; Acidosis ; Animals ; Anticancer properties ; Antineoplastic agents ; Antitumor agents ; Apoptosis ; Biology ; Brain cancer ; Brain tumors ; Cancer ; Cancer therapies ; Cell Line, Tumor ; Cytotoxicity ; Deprivation ; Drug resistance ; Endoplasmic reticulum ; Epidermal growth factor ; Epidermal Growth Factor - genetics ; Epidermal Growth Factor - metabolism ; Epidermal Growth Factor - pharmacology ; Epidermal growth factors ; Fusion protein ; Glioblastoma ; Glioblastoma - genetics ; Glioblastoma - metabolism ; Glioblastoma cells ; Glioblastomas ; Glioma ; Glioma cells ; GRP78 protein ; Health aspects ; Heat-Shock Proteins - genetics ; Heat-Shock Proteins - metabolism ; Humans ; Hypoxia ; Immunoblotting ; Immunotoxins ; Ionizing radiation ; Kinases ; Medicine ; Mice ; Microenvironments ; Oncology ; Prostate cancer ; Protein folding ; Proteins ; Proteolysis ; Radiation ; Reverse Transcriptase Polymerase Chain Reaction ; Stem cells ; Subtilisins - genetics ; Subtilisins - metabolism ; Subtilisins - pharmacology ; Temozolomide ; Tissue Array Analysis ; Toxicity ; Tumorigenesis ; Tumors ; Unfolded Protein Response - drug effects ; Unfolded Protein Response - genetics ; Xenografts</subject><ispartof>PloS one, 2012-12, Vol.7 (12), p.e52265</ispartof><rights>COPYRIGHT 2012 Public Library of Science</rights><rights>2012 Prabhu et al. This is an open-access article distributed under the terms of the Creative Commons Attribution License: https://creativecommons.org/licenses/by/4.0/ (the “License”), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.</rights><rights>2012 Prabhu et al 2012 Prabhu et al</rights><lds50>peer_reviewed</lds50><oa>free_for_read</oa><woscitedreferencessubscribed>false</woscitedreferencessubscribed><citedby>FETCH-LOGICAL-c692t-f85d1ff4f8c0c1821e3cec0f490ca1faf3504dbeb621c3a86cf3db53347844f13</citedby><cites>FETCH-LOGICAL-c692t-f85d1ff4f8c0c1821e3cec0f490ca1faf3504dbeb621c3a86cf3db53347844f13</cites></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><linktopdf>$$Uhttps://www.ncbi.nlm.nih.gov/pmc/articles/PMC3527517/pdf/$$EPDF$$P50$$Gpubmedcentral$$Hfree_for_read</linktopdf><linktohtml>$$Uhttps://www.ncbi.nlm.nih.gov/pmc/articles/PMC3527517/$$EHTML$$P50$$Gpubmedcentral$$Hfree_for_read</linktohtml><link.rule.ids>230,314,723,776,780,860,881,2096,2915,23847,27903,27904,53769,53771,79346,79347</link.rule.ids><backlink>$$Uhttps://www.ncbi.nlm.nih.gov/pubmed/23284962$$D View this record in MEDLINE/PubMed$$Hfree_for_read</backlink></links><search><contributor>Rota, Rossella</contributor><creatorcontrib>Prabhu, Antony</creatorcontrib><creatorcontrib>Sarcar, Bhaswati</creatorcontrib><creatorcontrib>Kahali, Soumen</creatorcontrib><creatorcontrib>Shan, Yuan</creatorcontrib><creatorcontrib>Chinnaiyan, Prakash</creatorcontrib><title>Targeting the unfolded protein response in glioblastoma cells with the fusion protein EGF-SubA</title><title>PloS one</title><addtitle>PLoS One</addtitle><description>Rapidly growing tumors require efficient means to allow them to adapt to fluctuating microenvironments consisting of hypoxia, nutrient deprivation, and acidosis. The unfolded protein response (UPR) represents a defense mechanism allowing cells to respond to these adverse conditions. The chaperone protein GRP78 serves as a master UPR regulator that is aberrantly expressed in a variety of cancers, including glioma. Therefore, cancer cells may be particularly reliant upon the adaptive mechanisms offered by the UPR and targeting GRP78 may represent a unique therapeutic strategy. Here we report that diffuse expression of GRP78 protein is present in Grade III-IV, but not Grade I-II glioma. To determine the role GRP78 plays in glioblastoma tumorigenesis, we explored the anti-tumor activity of the novel fusion protein EGF-SubA, which combines EGF with the cytotoxin SubA that has been recently shown to selectively cleave GRP78. EGF-SubA demonstrated potent tumor-specific proteolytic activity and cytotoxicity in glioblastoma lines and potentiated the anti-tumor activity of both temozolomide and ionizing radiation. To determine if the tumor microenvironment influences EGF-SubA activity, we maintained cells in acidic conditions that led to both UPR activation and increased EGF-SubA induced cytotoxicity. EGF-SubA was well tolerated in mice and led to a significant tumor growth delay in a glioma xenograft mouse model. The UPR is emerging as an important adaptive pathway contributing to glioma tumorigenesis. 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genetics</topic><topic>Epidermal Growth Factor - metabolism</topic><topic>Epidermal Growth Factor - pharmacology</topic><topic>Epidermal growth factors</topic><topic>Fusion protein</topic><topic>Glioblastoma</topic><topic>Glioblastoma - genetics</topic><topic>Glioblastoma - metabolism</topic><topic>Glioblastoma cells</topic><topic>Glioblastomas</topic><topic>Glioma</topic><topic>Glioma cells</topic><topic>GRP78 protein</topic><topic>Health aspects</topic><topic>Heat-Shock Proteins - genetics</topic><topic>Heat-Shock Proteins - metabolism</topic><topic>Humans</topic><topic>Hypoxia</topic><topic>Immunoblotting</topic><topic>Immunotoxins</topic><topic>Ionizing radiation</topic><topic>Kinases</topic><topic>Medicine</topic><topic>Mice</topic><topic>Microenvironments</topic><topic>Oncology</topic><topic>Prostate cancer</topic><topic>Protein folding</topic><topic>Proteins</topic><topic>Proteolysis</topic><topic>Radiation</topic><topic>Reverse Transcriptase Polymerase Chain Reaction</topic><topic>Stem cells</topic><topic>Subtilisins - 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The unfolded protein response (UPR) represents a defense mechanism allowing cells to respond to these adverse conditions. The chaperone protein GRP78 serves as a master UPR regulator that is aberrantly expressed in a variety of cancers, including glioma. Therefore, cancer cells may be particularly reliant upon the adaptive mechanisms offered by the UPR and targeting GRP78 may represent a unique therapeutic strategy. Here we report that diffuse expression of GRP78 protein is present in Grade III-IV, but not Grade I-II glioma. To determine the role GRP78 plays in glioblastoma tumorigenesis, we explored the anti-tumor activity of the novel fusion protein EGF-SubA, which combines EGF with the cytotoxin SubA that has been recently shown to selectively cleave GRP78. EGF-SubA demonstrated potent tumor-specific proteolytic activity and cytotoxicity in glioblastoma lines and potentiated the anti-tumor activity of both temozolomide and ionizing radiation. To determine if the tumor microenvironment influences EGF-SubA activity, we maintained cells in acidic conditions that led to both UPR activation and increased EGF-SubA induced cytotoxicity. EGF-SubA was well tolerated in mice and led to a significant tumor growth delay in a glioma xenograft mouse model. The UPR is emerging as an important adaptive pathway contributing to glioma tumorigenesis. Targeting its primary mediator, the chaperone protein GRP78, through specific, proteolytic cleavage with the immunotoxin EGF-SubA represents a novel and promising multi-targeted approach to cancer therapy.</abstract><cop>United States</cop><pub>Public Library of Science</pub><pmid>23284962</pmid><doi>10.1371/journal.pone.0052265</doi><tpages>e52265</tpages><oa>free_for_read</oa></addata></record> |
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subjects | Aberration Acidosis Animals Anticancer properties Antineoplastic agents Antitumor agents Apoptosis Biology Brain cancer Brain tumors Cancer Cancer therapies Cell Line, Tumor Cytotoxicity Deprivation Drug resistance Endoplasmic reticulum Epidermal growth factor Epidermal Growth Factor - genetics Epidermal Growth Factor - metabolism Epidermal Growth Factor - pharmacology Epidermal growth factors Fusion protein Glioblastoma Glioblastoma - genetics Glioblastoma - metabolism Glioblastoma cells Glioblastomas Glioma Glioma cells GRP78 protein Health aspects Heat-Shock Proteins - genetics Heat-Shock Proteins - metabolism Humans Hypoxia Immunoblotting Immunotoxins Ionizing radiation Kinases Medicine Mice Microenvironments Oncology Prostate cancer Protein folding Proteins Proteolysis Radiation Reverse Transcriptase Polymerase Chain Reaction Stem cells Subtilisins - genetics Subtilisins - metabolism Subtilisins - pharmacology Temozolomide Tissue Array Analysis Toxicity Tumorigenesis Tumors Unfolded Protein Response - drug effects Unfolded Protein Response - genetics Xenografts |
title | Targeting the unfolded protein response in glioblastoma cells with the fusion protein EGF-SubA |
url | https://sfx.bib-bvb.de/sfx_tum?ctx_ver=Z39.88-2004&ctx_enc=info:ofi/enc:UTF-8&ctx_tim=2025-01-28T05%3A42%3A05IST&url_ver=Z39.88-2004&url_ctx_fmt=infofi/fmt:kev:mtx:ctx&rfr_id=info:sid/primo.exlibrisgroup.com:primo3-Article-gale_plos_&rft_val_fmt=info:ofi/fmt:kev:mtx:journal&rft.genre=article&rft.atitle=Targeting%20the%20unfolded%20protein%20response%20in%20glioblastoma%20cells%20with%20the%20fusion%20protein%20EGF-SubA&rft.jtitle=PloS%20one&rft.au=Prabhu,%20Antony&rft.date=2012-12-20&rft.volume=7&rft.issue=12&rft.spage=e52265&rft.pages=e52265-&rft.issn=1932-6203&rft.eissn=1932-6203&rft_id=info:doi/10.1371/journal.pone.0052265&rft_dat=%3Cgale_plos_%3EA477058424%3C/gale_plos_%3E%3Curl%3E%3C/url%3E&disable_directlink=true&sfx.directlink=off&sfx.report_link=0&rft_id=info:oai/&rft_pqid=1327199299&rft_id=info:pmid/23284962&rft_galeid=A477058424&rft_doaj_id=oai_doaj_org_article_44a6e7442dad41379aded3d0f72f4aa8&rfr_iscdi=true |