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Natural Killer Cell Activation Receptor NKp30 Oligomerization Depends on Its N-Glycosylation

NKp30 is one of the main human natural killer (NK) cell activating receptors used in directed immunotherapy. The oligomerization of the NKp30 ligand binding domain depends on the length of the C-terminal stalk region, but our structural knowledge of NKp30 oligomerization and its role in signal trans...

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Autores principales: Skořepa, Ondřej, Pazicky, Samuel, Kalousková, Barbora, Bláha, Jan, Abreu, Celeste, Ječmen, Tomáš, Rosůlek, Michal, Fish, Alexander, Sedivy, Arthur, Harlos, Karl, Dohnálek, Jan, Skálová, Tereza, Vaněk, Ondřej
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7409301/
https://www.ncbi.nlm.nih.gov/pubmed/32708305
http://dx.doi.org/10.3390/cancers12071998
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author Skořepa, Ondřej
Pazicky, Samuel
Kalousková, Barbora
Bláha, Jan
Abreu, Celeste
Ječmen, Tomáš
Rosůlek, Michal
Fish, Alexander
Sedivy, Arthur
Harlos, Karl
Dohnálek, Jan
Skálová, Tereza
Vaněk, Ondřej
author_facet Skořepa, Ondřej
Pazicky, Samuel
Kalousková, Barbora
Bláha, Jan
Abreu, Celeste
Ječmen, Tomáš
Rosůlek, Michal
Fish, Alexander
Sedivy, Arthur
Harlos, Karl
Dohnálek, Jan
Skálová, Tereza
Vaněk, Ondřej
author_sort Skořepa, Ondřej
collection PubMed
description NKp30 is one of the main human natural killer (NK) cell activating receptors used in directed immunotherapy. The oligomerization of the NKp30 ligand binding domain depends on the length of the C-terminal stalk region, but our structural knowledge of NKp30 oligomerization and its role in signal transduction remains limited. Moreover, ligand binding of NKp30 is affected by the presence and type of N-glycosylation. In this study, we assessed whether NKp30 oligomerization depends on its N-glycosylation. Our results show that NKp30 forms oligomers when expressed in HEK293S GnTI(−) cell lines with simple N-glycans. However, NKp30 was detected only as monomers after enzymatic deglycosylation. Furthermore, we characterized the interaction between NKp30 and its best-studied cognate ligand, B7-H6, with respect to glycosylation and oligomerization, and we solved the crystal structure of this complex with glycosylated NKp30, revealing a new glycosylation-induced mode of NKp30 dimerization. Overall, this study provides new insights into the structural basis of NKp30 oligomerization and explains how the stalk region and glycosylation of NKp30 affect its ligand affinity. This furthers our understanding of the molecular mechanisms involved in NK cell activation, which is crucial for the successful design of novel NK cell-based targeted immunotherapeutics.
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spelling pubmed-74093012020-08-25 Natural Killer Cell Activation Receptor NKp30 Oligomerization Depends on Its N-Glycosylation Skořepa, Ondřej Pazicky, Samuel Kalousková, Barbora Bláha, Jan Abreu, Celeste Ječmen, Tomáš Rosůlek, Michal Fish, Alexander Sedivy, Arthur Harlos, Karl Dohnálek, Jan Skálová, Tereza Vaněk, Ondřej Cancers (Basel) Article NKp30 is one of the main human natural killer (NK) cell activating receptors used in directed immunotherapy. The oligomerization of the NKp30 ligand binding domain depends on the length of the C-terminal stalk region, but our structural knowledge of NKp30 oligomerization and its role in signal transduction remains limited. Moreover, ligand binding of NKp30 is affected by the presence and type of N-glycosylation. In this study, we assessed whether NKp30 oligomerization depends on its N-glycosylation. Our results show that NKp30 forms oligomers when expressed in HEK293S GnTI(−) cell lines with simple N-glycans. However, NKp30 was detected only as monomers after enzymatic deglycosylation. Furthermore, we characterized the interaction between NKp30 and its best-studied cognate ligand, B7-H6, with respect to glycosylation and oligomerization, and we solved the crystal structure of this complex with glycosylated NKp30, revealing a new glycosylation-induced mode of NKp30 dimerization. Overall, this study provides new insights into the structural basis of NKp30 oligomerization and explains how the stalk region and glycosylation of NKp30 affect its ligand affinity. This furthers our understanding of the molecular mechanisms involved in NK cell activation, which is crucial for the successful design of novel NK cell-based targeted immunotherapeutics. MDPI 2020-07-21 /pmc/articles/PMC7409301/ /pubmed/32708305 http://dx.doi.org/10.3390/cancers12071998 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Skořepa, Ondřej
Pazicky, Samuel
Kalousková, Barbora
Bláha, Jan
Abreu, Celeste
Ječmen, Tomáš
Rosůlek, Michal
Fish, Alexander
Sedivy, Arthur
Harlos, Karl
Dohnálek, Jan
Skálová, Tereza
Vaněk, Ondřej
Natural Killer Cell Activation Receptor NKp30 Oligomerization Depends on Its N-Glycosylation
title Natural Killer Cell Activation Receptor NKp30 Oligomerization Depends on Its N-Glycosylation
title_full Natural Killer Cell Activation Receptor NKp30 Oligomerization Depends on Its N-Glycosylation
title_fullStr Natural Killer Cell Activation Receptor NKp30 Oligomerization Depends on Its N-Glycosylation
title_full_unstemmed Natural Killer Cell Activation Receptor NKp30 Oligomerization Depends on Its N-Glycosylation
title_short Natural Killer Cell Activation Receptor NKp30 Oligomerization Depends on Its N-Glycosylation
title_sort natural killer cell activation receptor nkp30 oligomerization depends on its n-glycosylation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7409301/
https://www.ncbi.nlm.nih.gov/pubmed/32708305
http://dx.doi.org/10.3390/cancers12071998
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