Cargando…

Membrane-proximal TRAIL species are incapable of inducing short circuit apoptosis signaling: Implications for drug development and basic cytokine biology

TRAIL continues to garner substantial interest as a recombinant cancer therapeutic while the native cytokine itself serves important tumor surveillance functions when expressed in membrane-anchored form on activated immune effector cells. We have recently developed the genetically stabilized TRAIL p...

Descripción completa

Detalles Bibliográficos
Autores principales: Tatzel, Katharina, Kuroki, Lindsay, Dmitriev, Igor, Kashentseva, Elena, Curiel, David T., Goedegebuure, S. Peter, Powell, Matthew A., Mutch, David G., Hawkins, William G., Spitzer, Dirk
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4776141/
https://www.ncbi.nlm.nih.gov/pubmed/26935795
http://dx.doi.org/10.1038/srep22661
_version_ 1782419099383496704
author Tatzel, Katharina
Kuroki, Lindsay
Dmitriev, Igor
Kashentseva, Elena
Curiel, David T.
Goedegebuure, S. Peter
Powell, Matthew A.
Mutch, David G.
Hawkins, William G.
Spitzer, Dirk
author_facet Tatzel, Katharina
Kuroki, Lindsay
Dmitriev, Igor
Kashentseva, Elena
Curiel, David T.
Goedegebuure, S. Peter
Powell, Matthew A.
Mutch, David G.
Hawkins, William G.
Spitzer, Dirk
author_sort Tatzel, Katharina
collection PubMed
description TRAIL continues to garner substantial interest as a recombinant cancer therapeutic while the native cytokine itself serves important tumor surveillance functions when expressed in membrane-anchored form on activated immune effector cells. We have recently developed the genetically stabilized TRAIL platform TR3 in efforts to improve the limitations associated with currently available drug variants. While in the process of characterizing mesothelin-targeted TR3 variants using a single chain antibody (scFv) delivery format (SS-TR3), we discovered that the membrane-tethered cytokine had a substantially increased activity profile compared to non-targeted TR3. However, cell death proceeded exclusively via a bystander mechanism and protected the mesothelin-positive targets from apoptosis rather than leading to their elimination. Incorporation of a spacer-into the mesothelin surface antigen or the cancer drug itself-converted SS-TR3 into a cis-acting phenotype. Further experiments with membrane-anchored TR3 variants and the native cytokine confirmed our hypothesis that membrane-proximal TRAIL species lack the capacity to physically engage their cognate receptors coexpressed on the same cell membrane. Our findings not only provide an explanation for the “peaceful” coexistence of ligand and receptor of a representative member of the TNF superfamily but give us vital clues for the design of activity-enhanced TR3-based cancer therapeutics.
format Online
Article
Text
id pubmed-4776141
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-47761412016-03-09 Membrane-proximal TRAIL species are incapable of inducing short circuit apoptosis signaling: Implications for drug development and basic cytokine biology Tatzel, Katharina Kuroki, Lindsay Dmitriev, Igor Kashentseva, Elena Curiel, David T. Goedegebuure, S. Peter Powell, Matthew A. Mutch, David G. Hawkins, William G. Spitzer, Dirk Sci Rep Article TRAIL continues to garner substantial interest as a recombinant cancer therapeutic while the native cytokine itself serves important tumor surveillance functions when expressed in membrane-anchored form on activated immune effector cells. We have recently developed the genetically stabilized TRAIL platform TR3 in efforts to improve the limitations associated with currently available drug variants. While in the process of characterizing mesothelin-targeted TR3 variants using a single chain antibody (scFv) delivery format (SS-TR3), we discovered that the membrane-tethered cytokine had a substantially increased activity profile compared to non-targeted TR3. However, cell death proceeded exclusively via a bystander mechanism and protected the mesothelin-positive targets from apoptosis rather than leading to their elimination. Incorporation of a spacer-into the mesothelin surface antigen or the cancer drug itself-converted SS-TR3 into a cis-acting phenotype. Further experiments with membrane-anchored TR3 variants and the native cytokine confirmed our hypothesis that membrane-proximal TRAIL species lack the capacity to physically engage their cognate receptors coexpressed on the same cell membrane. Our findings not only provide an explanation for the “peaceful” coexistence of ligand and receptor of a representative member of the TNF superfamily but give us vital clues for the design of activity-enhanced TR3-based cancer therapeutics. Nature Publishing Group 2016-03-03 /pmc/articles/PMC4776141/ /pubmed/26935795 http://dx.doi.org/10.1038/srep22661 Text en Copyright © 2016, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Tatzel, Katharina
Kuroki, Lindsay
Dmitriev, Igor
Kashentseva, Elena
Curiel, David T.
Goedegebuure, S. Peter
Powell, Matthew A.
Mutch, David G.
Hawkins, William G.
Spitzer, Dirk
Membrane-proximal TRAIL species are incapable of inducing short circuit apoptosis signaling: Implications for drug development and basic cytokine biology
title Membrane-proximal TRAIL species are incapable of inducing short circuit apoptosis signaling: Implications for drug development and basic cytokine biology
title_full Membrane-proximal TRAIL species are incapable of inducing short circuit apoptosis signaling: Implications for drug development and basic cytokine biology
title_fullStr Membrane-proximal TRAIL species are incapable of inducing short circuit apoptosis signaling: Implications for drug development and basic cytokine biology
title_full_unstemmed Membrane-proximal TRAIL species are incapable of inducing short circuit apoptosis signaling: Implications for drug development and basic cytokine biology
title_short Membrane-proximal TRAIL species are incapable of inducing short circuit apoptosis signaling: Implications for drug development and basic cytokine biology
title_sort membrane-proximal trail species are incapable of inducing short circuit apoptosis signaling: implications for drug development and basic cytokine biology
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4776141/
https://www.ncbi.nlm.nih.gov/pubmed/26935795
http://dx.doi.org/10.1038/srep22661
work_keys_str_mv AT tatzelkatharina membraneproximaltrailspeciesareincapableofinducingshortcircuitapoptosissignalingimplicationsfordrugdevelopmentandbasiccytokinebiology
AT kurokilindsay membraneproximaltrailspeciesareincapableofinducingshortcircuitapoptosissignalingimplicationsfordrugdevelopmentandbasiccytokinebiology
AT dmitrievigor membraneproximaltrailspeciesareincapableofinducingshortcircuitapoptosissignalingimplicationsfordrugdevelopmentandbasiccytokinebiology
AT kashentsevaelena membraneproximaltrailspeciesareincapableofinducingshortcircuitapoptosissignalingimplicationsfordrugdevelopmentandbasiccytokinebiology
AT curieldavidt membraneproximaltrailspeciesareincapableofinducingshortcircuitapoptosissignalingimplicationsfordrugdevelopmentandbasiccytokinebiology
AT goedegebuurespeter membraneproximaltrailspeciesareincapableofinducingshortcircuitapoptosissignalingimplicationsfordrugdevelopmentandbasiccytokinebiology
AT powellmatthewa membraneproximaltrailspeciesareincapableofinducingshortcircuitapoptosissignalingimplicationsfordrugdevelopmentandbasiccytokinebiology
AT mutchdavidg membraneproximaltrailspeciesareincapableofinducingshortcircuitapoptosissignalingimplicationsfordrugdevelopmentandbasiccytokinebiology
AT hawkinswilliamg membraneproximaltrailspeciesareincapableofinducingshortcircuitapoptosissignalingimplicationsfordrugdevelopmentandbasiccytokinebiology
AT spitzerdirk membraneproximaltrailspeciesareincapableofinducingshortcircuitapoptosissignalingimplicationsfordrugdevelopmentandbasiccytokinebiology