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Assessment of T Cell Receptor Complex Expression Kinetics in Natural Killer Cells

Among the polypeptides that comprise the T cell receptor (TCR), only CD3ζ is found in Natural Killer (NK) cells, where it transmits signals from activating receptors such as CD16 and NKp46. NK cells are potent immune cells that recognize target cells through germline-encoded activating and inhibitor...

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Autores principales: Rasul, Khder H., Hussain, Alamdar, Reilly, Hazel, Karvouni, Maria, Dahlberg, Carin I. M., Al-Attar, Mustafa S., Wagner, Arnika K., Alici, Evren, Mohammad, Dara K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9497757/
https://www.ncbi.nlm.nih.gov/pubmed/36135177
http://dx.doi.org/10.3390/cimb44090265
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author Rasul, Khder H.
Hussain, Alamdar
Reilly, Hazel
Karvouni, Maria
Dahlberg, Carin I. M.
Al-Attar, Mustafa S.
Wagner, Arnika K.
Alici, Evren
Mohammad, Dara K.
author_facet Rasul, Khder H.
Hussain, Alamdar
Reilly, Hazel
Karvouni, Maria
Dahlberg, Carin I. M.
Al-Attar, Mustafa S.
Wagner, Arnika K.
Alici, Evren
Mohammad, Dara K.
author_sort Rasul, Khder H.
collection PubMed
description Among the polypeptides that comprise the T cell receptor (TCR), only CD3ζ is found in Natural Killer (NK) cells, where it transmits signals from activating receptors such as CD16 and NKp46. NK cells are potent immune cells that recognize target cells through germline-encoded activating and inhibitory receptors. Genetic engineering of NK cells enables tumor-specific antigen recognition and, thus, has a significant promise in adoptive cell therapy. Ectopic expression of engineered TCR components in T cells leads to mispairing with the endogenous components, making a knockout of the endogenous TCR necessary. To circumvent the mispairing of TCRs or the need for knockout technologies, TCR complex expression has been studied in NK cells. In the current study, we explored the cellular processing of the TCR complex in NK cells. We observed that in the absence of CD3 subunits, the TCR was not expressed on the surface of NK cells and vice versa. Moreover, a progressive increase in surface expression of TCR between day three and day seven was observed after transduction. Interestingly, the TCR complex expression in NK92 cells was enhanced with a proteasome inhibitor (bortezomib) but not a lysosomal inhibitor (chloroquine). Additionally, we observed that the TCR complex was functional in NK92 cells as measured by estimating CD107a as a degranulation marker, IFNγ cytokine production, and killing assays. NK92 cells strongly degranulated when CD3ε was engaged in the presence of TCR, but not when only CD3 was overexpressed. Therefore, our findings encourage further investigation to unravel the mechanisms that prevent the surface expression of the TCR complex.
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spelling pubmed-94977572022-09-23 Assessment of T Cell Receptor Complex Expression Kinetics in Natural Killer Cells Rasul, Khder H. Hussain, Alamdar Reilly, Hazel Karvouni, Maria Dahlberg, Carin I. M. Al-Attar, Mustafa S. Wagner, Arnika K. Alici, Evren Mohammad, Dara K. Curr Issues Mol Biol Article Among the polypeptides that comprise the T cell receptor (TCR), only CD3ζ is found in Natural Killer (NK) cells, where it transmits signals from activating receptors such as CD16 and NKp46. NK cells are potent immune cells that recognize target cells through germline-encoded activating and inhibitory receptors. Genetic engineering of NK cells enables tumor-specific antigen recognition and, thus, has a significant promise in adoptive cell therapy. Ectopic expression of engineered TCR components in T cells leads to mispairing with the endogenous components, making a knockout of the endogenous TCR necessary. To circumvent the mispairing of TCRs or the need for knockout technologies, TCR complex expression has been studied in NK cells. In the current study, we explored the cellular processing of the TCR complex in NK cells. We observed that in the absence of CD3 subunits, the TCR was not expressed on the surface of NK cells and vice versa. Moreover, a progressive increase in surface expression of TCR between day three and day seven was observed after transduction. Interestingly, the TCR complex expression in NK92 cells was enhanced with a proteasome inhibitor (bortezomib) but not a lysosomal inhibitor (chloroquine). Additionally, we observed that the TCR complex was functional in NK92 cells as measured by estimating CD107a as a degranulation marker, IFNγ cytokine production, and killing assays. NK92 cells strongly degranulated when CD3ε was engaged in the presence of TCR, but not when only CD3 was overexpressed. Therefore, our findings encourage further investigation to unravel the mechanisms that prevent the surface expression of the TCR complex. MDPI 2022-08-25 /pmc/articles/PMC9497757/ /pubmed/36135177 http://dx.doi.org/10.3390/cimb44090265 Text en © 2022 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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Rasul, Khder H.
Hussain, Alamdar
Reilly, Hazel
Karvouni, Maria
Dahlberg, Carin I. M.
Al-Attar, Mustafa S.
Wagner, Arnika K.
Alici, Evren
Mohammad, Dara K.
Assessment of T Cell Receptor Complex Expression Kinetics in Natural Killer Cells
title Assessment of T Cell Receptor Complex Expression Kinetics in Natural Killer Cells
title_full Assessment of T Cell Receptor Complex Expression Kinetics in Natural Killer Cells
title_fullStr Assessment of T Cell Receptor Complex Expression Kinetics in Natural Killer Cells
title_full_unstemmed Assessment of T Cell Receptor Complex Expression Kinetics in Natural Killer Cells
title_short Assessment of T Cell Receptor Complex Expression Kinetics in Natural Killer Cells
title_sort assessment of t cell receptor complex expression kinetics in natural killer cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9497757/
https://www.ncbi.nlm.nih.gov/pubmed/36135177
http://dx.doi.org/10.3390/cimb44090265
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