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Expression of the Reverse Transcriptase Domain of Telomerase Reverse Transcriptase Induces Lytic Cellular Response in DNA-Immunized Mice and Limits Tumorigenic and Metastatic Potential of Murine Adenocarcinoma 4T1 Cells

Telomerase reverse transcriptase (TERT) is a classic tumor-associated antigen overexpressed in majority of tumors. Several TERT-based cancer vaccines are currently in clinical trials, but immune correlates of their antitumor activity remain largely unknown. Here, we characterized fine specificity an...

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Autores principales: Jansons, Juris, Bayurova, Ekaterina, Skrastina, Dace, Kurlanda, Alisa, Fridrihsone, Ilze, Kostyushev, Dmitry, Kostyusheva, Anastasia, Artyuhov, Alexander, Dashinimaev, Erdem, Avdoshina, Darya, Kondrashova, Alla, Valuev-Elliston, Vladimir, Latyshev, Oleg, Eliseeva, Olesja, Petkov, Stefan, Abakumov, Maxim, Hippe, Laura, Kholodnyuk, Irina, Starodubova, Elizaveta, Gorodnicheva, Tatiana, Ivanov, Alexander, Gordeychuk, Ilya, Isaguliants, Maria
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7350266/
https://www.ncbi.nlm.nih.gov/pubmed/32570805
http://dx.doi.org/10.3390/vaccines8020318
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author Jansons, Juris
Bayurova, Ekaterina
Skrastina, Dace
Kurlanda, Alisa
Fridrihsone, Ilze
Kostyushev, Dmitry
Kostyusheva, Anastasia
Artyuhov, Alexander
Dashinimaev, Erdem
Avdoshina, Darya
Kondrashova, Alla
Valuev-Elliston, Vladimir
Latyshev, Oleg
Eliseeva, Olesja
Petkov, Stefan
Abakumov, Maxim
Hippe, Laura
Kholodnyuk, Irina
Starodubova, Elizaveta
Gorodnicheva, Tatiana
Ivanov, Alexander
Gordeychuk, Ilya
Isaguliants, Maria
author_facet Jansons, Juris
Bayurova, Ekaterina
Skrastina, Dace
Kurlanda, Alisa
Fridrihsone, Ilze
Kostyushev, Dmitry
Kostyusheva, Anastasia
Artyuhov, Alexander
Dashinimaev, Erdem
Avdoshina, Darya
Kondrashova, Alla
Valuev-Elliston, Vladimir
Latyshev, Oleg
Eliseeva, Olesja
Petkov, Stefan
Abakumov, Maxim
Hippe, Laura
Kholodnyuk, Irina
Starodubova, Elizaveta
Gorodnicheva, Tatiana
Ivanov, Alexander
Gordeychuk, Ilya
Isaguliants, Maria
author_sort Jansons, Juris
collection PubMed
description Telomerase reverse transcriptase (TERT) is a classic tumor-associated antigen overexpressed in majority of tumors. Several TERT-based cancer vaccines are currently in clinical trials, but immune correlates of their antitumor activity remain largely unknown. Here, we characterized fine specificity and lytic potential of immune response against rat TERT in mice. BALB/c mice were primed with plasmids encoding expression-optimized hemagglutinin-tagged or nontagged TERT or empty vector and boosted with same DNA mixed with plasmid encoding firefly luciferase (Luc DNA). Injections were followed by electroporation. Photon emission from booster sites was assessed by in vivo bioluminescent imaging. Two weeks post boost, mice were sacrificed and assessed for IFN-γ, interleukin-2 (IL-2), and tumor necrosis factor alpha (TNF-α) production by T-cells upon their stimulation with TERT peptides and for anti-TERT antibodies. All TERT DNA-immunized mice developed cellular and antibody response against epitopes at the N-terminus and reverse transcriptase domain (rtTERT) of TERT. Photon emission from mice boosted with TERT/TERT-HA+Luc DNA was 100 times lower than from vector+Luc DNA-boosted controls. Bioluminescence loss correlated with percent of IFN-γ/IL-2/TNF-α producing CD8+ and CD4+ T-cells specific to rtTERT, indicating immune clearance of TERT/Luc-coexpressing cells. We made murine adenocarcinoma 4T1luc2 cells to express rtTERT by lentiviral transduction. Expression of rtTERT significantly reduced the capacity of 4T1luc2 to form tumors and metastasize in mice, while not affecting in vitro growth. Mice which rejected the tumors developed T-cell response against rtTERT and low/no response to the autoepitope of TERT. This advances rtTERT as key component of TERT-based therapeutic vaccines against cancer.
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spelling pubmed-73502662020-07-22 Expression of the Reverse Transcriptase Domain of Telomerase Reverse Transcriptase Induces Lytic Cellular Response in DNA-Immunized Mice and Limits Tumorigenic and Metastatic Potential of Murine Adenocarcinoma 4T1 Cells Jansons, Juris Bayurova, Ekaterina Skrastina, Dace Kurlanda, Alisa Fridrihsone, Ilze Kostyushev, Dmitry Kostyusheva, Anastasia Artyuhov, Alexander Dashinimaev, Erdem Avdoshina, Darya Kondrashova, Alla Valuev-Elliston, Vladimir Latyshev, Oleg Eliseeva, Olesja Petkov, Stefan Abakumov, Maxim Hippe, Laura Kholodnyuk, Irina Starodubova, Elizaveta Gorodnicheva, Tatiana Ivanov, Alexander Gordeychuk, Ilya Isaguliants, Maria Vaccines (Basel) Article Telomerase reverse transcriptase (TERT) is a classic tumor-associated antigen overexpressed in majority of tumors. Several TERT-based cancer vaccines are currently in clinical trials, but immune correlates of their antitumor activity remain largely unknown. Here, we characterized fine specificity and lytic potential of immune response against rat TERT in mice. BALB/c mice were primed with plasmids encoding expression-optimized hemagglutinin-tagged or nontagged TERT or empty vector and boosted with same DNA mixed with plasmid encoding firefly luciferase (Luc DNA). Injections were followed by electroporation. Photon emission from booster sites was assessed by in vivo bioluminescent imaging. Two weeks post boost, mice were sacrificed and assessed for IFN-γ, interleukin-2 (IL-2), and tumor necrosis factor alpha (TNF-α) production by T-cells upon their stimulation with TERT peptides and for anti-TERT antibodies. All TERT DNA-immunized mice developed cellular and antibody response against epitopes at the N-terminus and reverse transcriptase domain (rtTERT) of TERT. Photon emission from mice boosted with TERT/TERT-HA+Luc DNA was 100 times lower than from vector+Luc DNA-boosted controls. Bioluminescence loss correlated with percent of IFN-γ/IL-2/TNF-α producing CD8+ and CD4+ T-cells specific to rtTERT, indicating immune clearance of TERT/Luc-coexpressing cells. We made murine adenocarcinoma 4T1luc2 cells to express rtTERT by lentiviral transduction. Expression of rtTERT significantly reduced the capacity of 4T1luc2 to form tumors and metastasize in mice, while not affecting in vitro growth. Mice which rejected the tumors developed T-cell response against rtTERT and low/no response to the autoepitope of TERT. This advances rtTERT as key component of TERT-based therapeutic vaccines against cancer. MDPI 2020-06-18 /pmc/articles/PMC7350266/ /pubmed/32570805 http://dx.doi.org/10.3390/vaccines8020318 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Jansons, Juris
Bayurova, Ekaterina
Skrastina, Dace
Kurlanda, Alisa
Fridrihsone, Ilze
Kostyushev, Dmitry
Kostyusheva, Anastasia
Artyuhov, Alexander
Dashinimaev, Erdem
Avdoshina, Darya
Kondrashova, Alla
Valuev-Elliston, Vladimir
Latyshev, Oleg
Eliseeva, Olesja
Petkov, Stefan
Abakumov, Maxim
Hippe, Laura
Kholodnyuk, Irina
Starodubova, Elizaveta
Gorodnicheva, Tatiana
Ivanov, Alexander
Gordeychuk, Ilya
Isaguliants, Maria
Expression of the Reverse Transcriptase Domain of Telomerase Reverse Transcriptase Induces Lytic Cellular Response in DNA-Immunized Mice and Limits Tumorigenic and Metastatic Potential of Murine Adenocarcinoma 4T1 Cells
title Expression of the Reverse Transcriptase Domain of Telomerase Reverse Transcriptase Induces Lytic Cellular Response in DNA-Immunized Mice and Limits Tumorigenic and Metastatic Potential of Murine Adenocarcinoma 4T1 Cells
title_full Expression of the Reverse Transcriptase Domain of Telomerase Reverse Transcriptase Induces Lytic Cellular Response in DNA-Immunized Mice and Limits Tumorigenic and Metastatic Potential of Murine Adenocarcinoma 4T1 Cells
title_fullStr Expression of the Reverse Transcriptase Domain of Telomerase Reverse Transcriptase Induces Lytic Cellular Response in DNA-Immunized Mice and Limits Tumorigenic and Metastatic Potential of Murine Adenocarcinoma 4T1 Cells
title_full_unstemmed Expression of the Reverse Transcriptase Domain of Telomerase Reverse Transcriptase Induces Lytic Cellular Response in DNA-Immunized Mice and Limits Tumorigenic and Metastatic Potential of Murine Adenocarcinoma 4T1 Cells
title_short Expression of the Reverse Transcriptase Domain of Telomerase Reverse Transcriptase Induces Lytic Cellular Response in DNA-Immunized Mice and Limits Tumorigenic and Metastatic Potential of Murine Adenocarcinoma 4T1 Cells
title_sort expression of the reverse transcriptase domain of telomerase reverse transcriptase induces lytic cellular response in dna-immunized mice and limits tumorigenic and metastatic potential of murine adenocarcinoma 4t1 cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7350266/
https://www.ncbi.nlm.nih.gov/pubmed/32570805
http://dx.doi.org/10.3390/vaccines8020318
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