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Rapid reuptake of granzyme B leads to emperitosis: an apoptotic cell-in-cell death of immune killer cells inside tumor cells

A cell-in-cell process refers to the invasion of one living cell into another homotypic or heterotypic cell. Different from non-apoptotic death processes of internalized cells termed entosis or cannibalism, we previously reported an apoptotic cell-in-cell death occurring during heterotypic cell-in-c...

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Autores principales: Wang, S, He, M-f, Chen, Y-h, Wang, M-y, Yu, X-m, Bai, J, Zhu, H-y, Wang, Y-y, Zhao, H, Mei, Q, Nie, J, Ma, J, Wang, J-f, Wen, Q, Ma, L, Wang, Y, Wang, X-n
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3824662/
https://www.ncbi.nlm.nih.gov/pubmed/24113190
http://dx.doi.org/10.1038/cddis.2013.352
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author Wang, S
He, M-f
Chen, Y-h
Wang, M-y
Yu, X-m
Bai, J
Zhu, H-y
Wang, Y-y
Zhao, H
Mei, Q
Nie, J
Ma, J
Wang, J-f
Wen, Q
Ma, L
Wang, Y
Wang, X-n
author_facet Wang, S
He, M-f
Chen, Y-h
Wang, M-y
Yu, X-m
Bai, J
Zhu, H-y
Wang, Y-y
Zhao, H
Mei, Q
Nie, J
Ma, J
Wang, J-f
Wen, Q
Ma, L
Wang, Y
Wang, X-n
author_sort Wang, S
collection PubMed
description A cell-in-cell process refers to the invasion of one living cell into another homotypic or heterotypic cell. Different from non-apoptotic death processes of internalized cells termed entosis or cannibalism, we previously reported an apoptotic cell-in-cell death occurring during heterotypic cell-in-cell formation. In this study, we further demonstrated that the apoptotic cell-in-cell death occurred only in internalized immune killer cells expressing granzyme B (GzmB). Vacuole wrapping around the internalized cells inside the target cells was the common hallmark during the early stage of all cell-in-cell processes, which resulted in the accumulation of reactive oxygen species and subsequent mitochondrial injury of encapsulated killer or non-cytotoxic immune cells. However, internalized killer cells mediated rapid bubbling of the vacuoles with the subsequent degranulation of GzmB inside the vacuole of the target cells and underwent the reuptake of GzmB by killer cells themselves. The confinement of GzmB inside the vacuole surpassed the lysosome-mediated cell death occurring in heterotypic or homotypic entosis processes, resulting in a GzmB-triggered caspase-dependent apoptotic cell-in-cell death of internalized killer cells. On the contrary, internalized killer cells from GzmB-deficient mice underwent a typical non-apoptotic entotic cell-in-cell death similar to that of non-cytotoxic immune cells or tumor cells. Our results thus demonstrated the critical involvement of immune cells with cytotoxic property in apoptotic cell-in-cell death, which we termed as emperitosis taken from emperipolesis and apoptosis. Whereas entosis or cannibalism may serve as a feed-on mechanism to exacerbate and nourish tumor cells, emperitosis of immune killer cells inside tumor cells may serve as an in-cell danger sensation model to prevent the killing of target cells from inside, implying a unique mechanism for tumor cells to escape from immune surveillance.
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spelling pubmed-38246622013-11-12 Rapid reuptake of granzyme B leads to emperitosis: an apoptotic cell-in-cell death of immune killer cells inside tumor cells Wang, S He, M-f Chen, Y-h Wang, M-y Yu, X-m Bai, J Zhu, H-y Wang, Y-y Zhao, H Mei, Q Nie, J Ma, J Wang, J-f Wen, Q Ma, L Wang, Y Wang, X-n Cell Death Dis Original Article A cell-in-cell process refers to the invasion of one living cell into another homotypic or heterotypic cell. Different from non-apoptotic death processes of internalized cells termed entosis or cannibalism, we previously reported an apoptotic cell-in-cell death occurring during heterotypic cell-in-cell formation. In this study, we further demonstrated that the apoptotic cell-in-cell death occurred only in internalized immune killer cells expressing granzyme B (GzmB). Vacuole wrapping around the internalized cells inside the target cells was the common hallmark during the early stage of all cell-in-cell processes, which resulted in the accumulation of reactive oxygen species and subsequent mitochondrial injury of encapsulated killer or non-cytotoxic immune cells. However, internalized killer cells mediated rapid bubbling of the vacuoles with the subsequent degranulation of GzmB inside the vacuole of the target cells and underwent the reuptake of GzmB by killer cells themselves. The confinement of GzmB inside the vacuole surpassed the lysosome-mediated cell death occurring in heterotypic or homotypic entosis processes, resulting in a GzmB-triggered caspase-dependent apoptotic cell-in-cell death of internalized killer cells. On the contrary, internalized killer cells from GzmB-deficient mice underwent a typical non-apoptotic entotic cell-in-cell death similar to that of non-cytotoxic immune cells or tumor cells. Our results thus demonstrated the critical involvement of immune cells with cytotoxic property in apoptotic cell-in-cell death, which we termed as emperitosis taken from emperipolesis and apoptosis. Whereas entosis or cannibalism may serve as a feed-on mechanism to exacerbate and nourish tumor cells, emperitosis of immune killer cells inside tumor cells may serve as an in-cell danger sensation model to prevent the killing of target cells from inside, implying a unique mechanism for tumor cells to escape from immune surveillance. Nature Publishing Group 2013-10 2013-10-10 /pmc/articles/PMC3824662/ /pubmed/24113190 http://dx.doi.org/10.1038/cddis.2013.352 Text en Copyright © 2013 Macmillan Publishers Limited http://creativecommons.org/licenses/by/3.0/ This work is licensed under a Creative Commons Attribution 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by/3.0/
spellingShingle Original Article
Wang, S
He, M-f
Chen, Y-h
Wang, M-y
Yu, X-m
Bai, J
Zhu, H-y
Wang, Y-y
Zhao, H
Mei, Q
Nie, J
Ma, J
Wang, J-f
Wen, Q
Ma, L
Wang, Y
Wang, X-n
Rapid reuptake of granzyme B leads to emperitosis: an apoptotic cell-in-cell death of immune killer cells inside tumor cells
title Rapid reuptake of granzyme B leads to emperitosis: an apoptotic cell-in-cell death of immune killer cells inside tumor cells
title_full Rapid reuptake of granzyme B leads to emperitosis: an apoptotic cell-in-cell death of immune killer cells inside tumor cells
title_fullStr Rapid reuptake of granzyme B leads to emperitosis: an apoptotic cell-in-cell death of immune killer cells inside tumor cells
title_full_unstemmed Rapid reuptake of granzyme B leads to emperitosis: an apoptotic cell-in-cell death of immune killer cells inside tumor cells
title_short Rapid reuptake of granzyme B leads to emperitosis: an apoptotic cell-in-cell death of immune killer cells inside tumor cells
title_sort rapid reuptake of granzyme b leads to emperitosis: an apoptotic cell-in-cell death of immune killer cells inside tumor cells
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3824662/
https://www.ncbi.nlm.nih.gov/pubmed/24113190
http://dx.doi.org/10.1038/cddis.2013.352
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