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Resistance to Granzyme B-mediated Cytochrome c Release in Bak-deficient Cells

Granzyme B (GrB), a serine protease with substrate specificity similar to the caspase family, is a major component of granule-mediated cytotoxicity of T lymphocytes. Although GrB can directly activate caspases, it induces apoptosis predominantly via Bid cleavage, mitochondrial outer membrane permeab...

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Autores principales: Wang, Gui-Qiang, Wieckowski, Eva, Goldstein, Leslie A., Gastman, Brian R., Rabinovitz, Asaf, Gambotto, Andrea, Li, Shuchen, Fang, Bingliang, Yin, Xiao-Ming, Rabinowich, Hannah
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 2001
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2195982/
https://www.ncbi.nlm.nih.gov/pubmed/11696597
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author Wang, Gui-Qiang
Wieckowski, Eva
Goldstein, Leslie A.
Gastman, Brian R.
Rabinovitz, Asaf
Gambotto, Andrea
Li, Shuchen
Fang, Bingliang
Yin, Xiao-Ming
Rabinowich, Hannah
author_facet Wang, Gui-Qiang
Wieckowski, Eva
Goldstein, Leslie A.
Gastman, Brian R.
Rabinovitz, Asaf
Gambotto, Andrea
Li, Shuchen
Fang, Bingliang
Yin, Xiao-Ming
Rabinowich, Hannah
author_sort Wang, Gui-Qiang
collection PubMed
description Granzyme B (GrB), a serine protease with substrate specificity similar to the caspase family, is a major component of granule-mediated cytotoxicity of T lymphocytes. Although GrB can directly activate caspases, it induces apoptosis predominantly via Bid cleavage, mitochondrial outer membrane permeabilization, and cytochrome c release. To study the molecular regulators for GrB-mediated mitochondrial apoptotic events, we used a CTL-free cytotoxicity system, wherein target cells are treated with purified GrB and replication-deficient adenovirus (Ad). We report here that the Bcl-2 proapoptotic family member, Bak, plays a dominant role in GrB-mediated mitochondrial apoptotic events. A variant of Jurkat cells, deficient in Bak expression, was resistant to GrB/Ad-mediated apoptosis, as determined by lack of membranous phosphatidylserine exposure, lack of DNA breaks, lack of mitochondrial outer membrane permeabilization, and unchanged expression of inner mitochondrial membrane cardiolipin. The resistance of Bak-deficient cells to GrB/Ad cytotoxicity was reversed by transduction of the Bak gene into these cells. The requirement for both Bid and Bak, was further demonstrated in a cell-free system using purified mitochondria and S-100 cytosol. Purified mitochondria from Bid knockout mice, but not from Bax knockout mice, failed to release cytochrome c in response to autologous S-100 and GrB. Also, Bak-deficient mitochondria did not release cytochrome c in response to GrB-treated cytosol unless recombinant Bak protein was added. These results are the first to report a role for Bak in GrB-mediated mitochondrial apoptosis. This study demonstrates that GrB-cleaved Bid, which differs in size and site of cleavage from caspase-8-cleaved Bid, utilizes Bak for cytochrome c release, and therefore, suggests that deficiency in Bak may serve as a mechanism of immune evasion for tumor or viral infected cells.
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spelling pubmed-21959822008-04-14 Resistance to Granzyme B-mediated Cytochrome c Release in Bak-deficient Cells Wang, Gui-Qiang Wieckowski, Eva Goldstein, Leslie A. Gastman, Brian R. Rabinovitz, Asaf Gambotto, Andrea Li, Shuchen Fang, Bingliang Yin, Xiao-Ming Rabinowich, Hannah J Exp Med Original Article Granzyme B (GrB), a serine protease with substrate specificity similar to the caspase family, is a major component of granule-mediated cytotoxicity of T lymphocytes. Although GrB can directly activate caspases, it induces apoptosis predominantly via Bid cleavage, mitochondrial outer membrane permeabilization, and cytochrome c release. To study the molecular regulators for GrB-mediated mitochondrial apoptotic events, we used a CTL-free cytotoxicity system, wherein target cells are treated with purified GrB and replication-deficient adenovirus (Ad). We report here that the Bcl-2 proapoptotic family member, Bak, plays a dominant role in GrB-mediated mitochondrial apoptotic events. A variant of Jurkat cells, deficient in Bak expression, was resistant to GrB/Ad-mediated apoptosis, as determined by lack of membranous phosphatidylserine exposure, lack of DNA breaks, lack of mitochondrial outer membrane permeabilization, and unchanged expression of inner mitochondrial membrane cardiolipin. The resistance of Bak-deficient cells to GrB/Ad cytotoxicity was reversed by transduction of the Bak gene into these cells. The requirement for both Bid and Bak, was further demonstrated in a cell-free system using purified mitochondria and S-100 cytosol. Purified mitochondria from Bid knockout mice, but not from Bax knockout mice, failed to release cytochrome c in response to autologous S-100 and GrB. Also, Bak-deficient mitochondria did not release cytochrome c in response to GrB-treated cytosol unless recombinant Bak protein was added. These results are the first to report a role for Bak in GrB-mediated mitochondrial apoptosis. This study demonstrates that GrB-cleaved Bid, which differs in size and site of cleavage from caspase-8-cleaved Bid, utilizes Bak for cytochrome c release, and therefore, suggests that deficiency in Bak may serve as a mechanism of immune evasion for tumor or viral infected cells. The Rockefeller University Press 2001-11-05 /pmc/articles/PMC2195982/ /pubmed/11696597 Text en Copyright © 2001, The Rockefeller University Press This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Original Article
Wang, Gui-Qiang
Wieckowski, Eva
Goldstein, Leslie A.
Gastman, Brian R.
Rabinovitz, Asaf
Gambotto, Andrea
Li, Shuchen
Fang, Bingliang
Yin, Xiao-Ming
Rabinowich, Hannah
Resistance to Granzyme B-mediated Cytochrome c Release in Bak-deficient Cells
title Resistance to Granzyme B-mediated Cytochrome c Release in Bak-deficient Cells
title_full Resistance to Granzyme B-mediated Cytochrome c Release in Bak-deficient Cells
title_fullStr Resistance to Granzyme B-mediated Cytochrome c Release in Bak-deficient Cells
title_full_unstemmed Resistance to Granzyme B-mediated Cytochrome c Release in Bak-deficient Cells
title_short Resistance to Granzyme B-mediated Cytochrome c Release in Bak-deficient Cells
title_sort resistance to granzyme b-mediated cytochrome c release in bak-deficient cells
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2195982/
https://www.ncbi.nlm.nih.gov/pubmed/11696597
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