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CRISPR-Cas9–Mediated TIM3 Knockout in Human Natural Killer Cells Enhances Growth Inhibitory Effects on Human Glioma Cells

Glioblastoma (GBM) is the most common and aggressive primary malignant brain tumor in adults. Natural Killer (NK) cells are potent cytotoxic effector cells against tumor cells inducing GBM cells; therefore, NK cell based- immunotherapy might be a promising target in GBM. T cell immunoglobulin mucin...

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Autores principales: Morimoto, Takayuki, Nakazawa, Tsutomu, Matsuda, Ryosuke, Nishimura, Fumihiko, Nakamura, Mitsutoshi, Yamada, Shuichi, Nakagawa, Ichiro, Park, Young-Soo, Tsujimura, Takahiro, Nakase, Hiroyuki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8036491/
https://www.ncbi.nlm.nih.gov/pubmed/33800561
http://dx.doi.org/10.3390/ijms22073489
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author Morimoto, Takayuki
Nakazawa, Tsutomu
Matsuda, Ryosuke
Nishimura, Fumihiko
Nakamura, Mitsutoshi
Yamada, Shuichi
Nakagawa, Ichiro
Park, Young-Soo
Tsujimura, Takahiro
Nakase, Hiroyuki
author_facet Morimoto, Takayuki
Nakazawa, Tsutomu
Matsuda, Ryosuke
Nishimura, Fumihiko
Nakamura, Mitsutoshi
Yamada, Shuichi
Nakagawa, Ichiro
Park, Young-Soo
Tsujimura, Takahiro
Nakase, Hiroyuki
author_sort Morimoto, Takayuki
collection PubMed
description Glioblastoma (GBM) is the most common and aggressive primary malignant brain tumor in adults. Natural Killer (NK) cells are potent cytotoxic effector cells against tumor cells inducing GBM cells; therefore, NK cell based- immunotherapy might be a promising target in GBM. T cell immunoglobulin mucin family member 3 (TIM3), a receptor expressed on NK cells, has been suggested as a marker of dysfunctional NK cells. We established TIM3 knockout in NK cells, using the clustered regularly interspaced short palindromic repeats (CRISPR)-CRISPR-associated protein 9 (Cas9). Electroporating of TIM3 exon 2- or exon 5-targeting guide RNA- Cas9 protein complexes (RNPs) inhibited TIM3 expression on NK cells with varying efficacy. T7 endonuclease I mutation detection assays showed that both RNPs disrupted the intended genome sites. The expression of other checkpoint receptors, i.e., programmed cell death 1 (PD1), Lymphocyte-activation gene 3 (LAG3), T cell immunoreceptor with Ig and ITIM domains (TIGIT), and TACTILE (CD96) were unchanged on the TIM3 knockout NK cells. Real time cell growth assays revealed that TIM3 knockout enhanced NK cell–mediated growth inhibition of GBM cells. These results demonstrated that TIM3 knockout enhanced human NK cell mediated cytotoxicity on GBM cells. Future, CRISPR-Cas9 mediated TIM3 knockout in NK cells may prove to be a promising immunotherapeutic alternative in patient with GBM.
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spelling pubmed-80364912021-04-12 CRISPR-Cas9–Mediated TIM3 Knockout in Human Natural Killer Cells Enhances Growth Inhibitory Effects on Human Glioma Cells Morimoto, Takayuki Nakazawa, Tsutomu Matsuda, Ryosuke Nishimura, Fumihiko Nakamura, Mitsutoshi Yamada, Shuichi Nakagawa, Ichiro Park, Young-Soo Tsujimura, Takahiro Nakase, Hiroyuki Int J Mol Sci Article Glioblastoma (GBM) is the most common and aggressive primary malignant brain tumor in adults. Natural Killer (NK) cells are potent cytotoxic effector cells against tumor cells inducing GBM cells; therefore, NK cell based- immunotherapy might be a promising target in GBM. T cell immunoglobulin mucin family member 3 (TIM3), a receptor expressed on NK cells, has been suggested as a marker of dysfunctional NK cells. We established TIM3 knockout in NK cells, using the clustered regularly interspaced short palindromic repeats (CRISPR)-CRISPR-associated protein 9 (Cas9). Electroporating of TIM3 exon 2- or exon 5-targeting guide RNA- Cas9 protein complexes (RNPs) inhibited TIM3 expression on NK cells with varying efficacy. T7 endonuclease I mutation detection assays showed that both RNPs disrupted the intended genome sites. The expression of other checkpoint receptors, i.e., programmed cell death 1 (PD1), Lymphocyte-activation gene 3 (LAG3), T cell immunoreceptor with Ig and ITIM domains (TIGIT), and TACTILE (CD96) were unchanged on the TIM3 knockout NK cells. Real time cell growth assays revealed that TIM3 knockout enhanced NK cell–mediated growth inhibition of GBM cells. These results demonstrated that TIM3 knockout enhanced human NK cell mediated cytotoxicity on GBM cells. Future, CRISPR-Cas9 mediated TIM3 knockout in NK cells may prove to be a promising immunotherapeutic alternative in patient with GBM. MDPI 2021-03-28 /pmc/articles/PMC8036491/ /pubmed/33800561 http://dx.doi.org/10.3390/ijms22073489 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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/ (https://creativecommons.org/licenses/by/4.0/) ).
spellingShingle Article
Morimoto, Takayuki
Nakazawa, Tsutomu
Matsuda, Ryosuke
Nishimura, Fumihiko
Nakamura, Mitsutoshi
Yamada, Shuichi
Nakagawa, Ichiro
Park, Young-Soo
Tsujimura, Takahiro
Nakase, Hiroyuki
CRISPR-Cas9–Mediated TIM3 Knockout in Human Natural Killer Cells Enhances Growth Inhibitory Effects on Human Glioma Cells
title CRISPR-Cas9–Mediated TIM3 Knockout in Human Natural Killer Cells Enhances Growth Inhibitory Effects on Human Glioma Cells
title_full CRISPR-Cas9–Mediated TIM3 Knockout in Human Natural Killer Cells Enhances Growth Inhibitory Effects on Human Glioma Cells
title_fullStr CRISPR-Cas9–Mediated TIM3 Knockout in Human Natural Killer Cells Enhances Growth Inhibitory Effects on Human Glioma Cells
title_full_unstemmed CRISPR-Cas9–Mediated TIM3 Knockout in Human Natural Killer Cells Enhances Growth Inhibitory Effects on Human Glioma Cells
title_short CRISPR-Cas9–Mediated TIM3 Knockout in Human Natural Killer Cells Enhances Growth Inhibitory Effects on Human Glioma Cells
title_sort crispr-cas9–mediated tim3 knockout in human natural killer cells enhances growth inhibitory effects on human glioma cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8036491/
https://www.ncbi.nlm.nih.gov/pubmed/33800561
http://dx.doi.org/10.3390/ijms22073489
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