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Genetic manipulation of primary human natural killer cells to investigate the functional and oncogenic roles of PRDM1

Extra-nodal natural killer (NK)/T-cell lymphoma, nasal type (ENKTCL) is a highly aggressive lymphoma, in which the tumor suppressor gene PRDM1 is frequently lost or inactivated. We employed two different CRISPR/Cas9 approaches to generate PRDM1-/- primary NK cells to study the role of this gene in N...

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Autores principales: Dong, Gehong, Li, Yuping, Lee, Logan, Liu, Xuxiang, Shi, Yunfei, Liu, Xiaoqian, Bouska, Alyssa, Gong, Qiang, Kong, Lingbo, Wang, Jinhui, Lou, Chih-Hong, McKeithan, Timothy W., Iqbal, Javeed, Chan, Wing C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Fondazione Ferrata Storti 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8409030/
https://www.ncbi.nlm.nih.gov/pubmed/32732362
http://dx.doi.org/10.3324/haematol.2020.254276
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author Dong, Gehong
Li, Yuping
Lee, Logan
Liu, Xuxiang
Shi, Yunfei
Liu, Xiaoqian
Bouska, Alyssa
Gong, Qiang
Kong, Lingbo
Wang, Jinhui
Lou, Chih-Hong
McKeithan, Timothy W.
Iqbal, Javeed
Chan, Wing C.
author_facet Dong, Gehong
Li, Yuping
Lee, Logan
Liu, Xuxiang
Shi, Yunfei
Liu, Xiaoqian
Bouska, Alyssa
Gong, Qiang
Kong, Lingbo
Wang, Jinhui
Lou, Chih-Hong
McKeithan, Timothy W.
Iqbal, Javeed
Chan, Wing C.
author_sort Dong, Gehong
collection PubMed
description Extra-nodal natural killer (NK)/T-cell lymphoma, nasal type (ENKTCL) is a highly aggressive lymphoma, in which the tumor suppressor gene PRDM1 is frequently lost or inactivated. We employed two different CRISPR/Cas9 approaches to generate PRDM1-/- primary NK cells to study the role of this gene in NK-cell homeostasis. PRDM1-/- NK cells showed a marked increase in cloning efficiency, higher proliferation rate and less apoptosis compared with their wild-type counterparts. Gene expression profiling demonstrated a marked enrichment in pathways associated with proliferation, cell cycle, MYC, MYB and TCR/NK signaling in PRDM1-/- NK cells, but pathways associated with normal cellular functions including cytotoxic functions were downregulated, suggesting that the loss of PRDM1 shifted NK cells toward proliferation and survival rather than the performance of their normal functions. We were also able to further modify a PRDM1-deleted clone to introduce heterozygous deletions of common tumor suppressor genes in ENKTCL such as TP53, DDX3X, and PTPN6. We established an in vitro model to elucidate the major pathways through which PRDM1 mediates its homeostatic control of NK cells. This approach can be applied to the study of other relevant genetic lesions and oncogenic collaborations in lymphoma pathogenesis.
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spelling pubmed-84090302021-09-08 Genetic manipulation of primary human natural killer cells to investigate the functional and oncogenic roles of PRDM1 Dong, Gehong Li, Yuping Lee, Logan Liu, Xuxiang Shi, Yunfei Liu, Xiaoqian Bouska, Alyssa Gong, Qiang Kong, Lingbo Wang, Jinhui Lou, Chih-Hong McKeithan, Timothy W. Iqbal, Javeed Chan, Wing C. Haematologica Article Extra-nodal natural killer (NK)/T-cell lymphoma, nasal type (ENKTCL) is a highly aggressive lymphoma, in which the tumor suppressor gene PRDM1 is frequently lost or inactivated. We employed two different CRISPR/Cas9 approaches to generate PRDM1-/- primary NK cells to study the role of this gene in NK-cell homeostasis. PRDM1-/- NK cells showed a marked increase in cloning efficiency, higher proliferation rate and less apoptosis compared with their wild-type counterparts. Gene expression profiling demonstrated a marked enrichment in pathways associated with proliferation, cell cycle, MYC, MYB and TCR/NK signaling in PRDM1-/- NK cells, but pathways associated with normal cellular functions including cytotoxic functions were downregulated, suggesting that the loss of PRDM1 shifted NK cells toward proliferation and survival rather than the performance of their normal functions. We were also able to further modify a PRDM1-deleted clone to introduce heterozygous deletions of common tumor suppressor genes in ENKTCL such as TP53, DDX3X, and PTPN6. We established an in vitro model to elucidate the major pathways through which PRDM1 mediates its homeostatic control of NK cells. This approach can be applied to the study of other relevant genetic lesions and oncogenic collaborations in lymphoma pathogenesis. Fondazione Ferrata Storti 2020-07-30 /pmc/articles/PMC8409030/ /pubmed/32732362 http://dx.doi.org/10.3324/haematol.2020.254276 Text en Copyright© 2021 Ferrata Storti Foundation https://creativecommons.org/licenses/by-nc/4.0/This article is distributed under the terms of the Creative Commons Attribution Noncommercial License (by-nc 4.0) which permits any noncommercial use, distribution, and reproduction in any medium, provided the original author(s) and source are credited.
spellingShingle Article
Dong, Gehong
Li, Yuping
Lee, Logan
Liu, Xuxiang
Shi, Yunfei
Liu, Xiaoqian
Bouska, Alyssa
Gong, Qiang
Kong, Lingbo
Wang, Jinhui
Lou, Chih-Hong
McKeithan, Timothy W.
Iqbal, Javeed
Chan, Wing C.
Genetic manipulation of primary human natural killer cells to investigate the functional and oncogenic roles of PRDM1
title Genetic manipulation of primary human natural killer cells to investigate the functional and oncogenic roles of PRDM1
title_full Genetic manipulation of primary human natural killer cells to investigate the functional and oncogenic roles of PRDM1
title_fullStr Genetic manipulation of primary human natural killer cells to investigate the functional and oncogenic roles of PRDM1
title_full_unstemmed Genetic manipulation of primary human natural killer cells to investigate the functional and oncogenic roles of PRDM1
title_short Genetic manipulation of primary human natural killer cells to investigate the functional and oncogenic roles of PRDM1
title_sort genetic manipulation of primary human natural killer cells to investigate the functional and oncogenic roles of prdm1
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8409030/
https://www.ncbi.nlm.nih.gov/pubmed/32732362
http://dx.doi.org/10.3324/haematol.2020.254276
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