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PMID: 16219538 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

KHYG-1, a model for the study of enhanced natural killer cell cytotoxicity.

Experimental hematology ·Vol. 33 ·No. 10 ·2005-10-00 ·Pages 1160-71

Suck G, Branch DR, Smyth MJ, Miller RG, Vergidis J, Fahim S, Keating A

Abstract

To compare the cytotoxicity of KHYG-1 with other natural killer (NK)/NK T-cell lines and identify molecules that may be associated with enhanced cytotoxicity, thereby eventually leading to improved NK cell-mediated cancer immunotherapy. NK/NK T-cell lines KHYG-1, NK-92, YT, and SNT-8 were compared with a novel flow cytometric cytotoxicity assay under different culture conditions. Transcription, expression, and phosphorylation studies were performed using polymerase chain reaction sequence-specific primers, reverse transcription polymerase chain reaction, immunoblotting, and flow cytometry. KHYG-1 is a highly cytotoxic cell line, exceeding the cytolytic capacity of the other cell lines against K562. KHYG-1 is also highly cytotoxic against the leukemia cell lines EM2, EM3, and HL60. The novel activation receptor NKp44 and its adaptor, DAP12, NKG2D, and constitutively phosphorylated ERK2 may be associated with the enhanced cytotoxicity of KHYG-1. This cell line most likely mediates cytolysis by granzyme M (but not granzymes A and B) together with perforin, which is constitutively fully cleaved to the 60-kD form, in contrast to the other cell lines. KHYG-1 is a valuable model for the study of enhanced cytotoxicity by NK cells. In addition to the activation of NKp44, KHYG-1 may induce apoptosis of tumor cells by the newly described granzyme M/perforin pathway. Targeted modifications of effector molecules demonstrated in this model could generate NK cells with even greater killing ability that may be particularly attractive for clinical application. Moreover, our demonstration of greater cytotoxicity of KHYG-1 versus NK-92 cells, already in clinical trials, suggests a direct therapeutic role for KHYG-1.

MeSH Terms
Adaptor Proteins, Signal Transducing Cell Line, Tumor Cytotoxicity, Immunologic/immunology Granzymes Humans Immunity, Cellular/immunology Killer Cells, Natural/cytology,immunology,transplantation Leukemia/immunology,therapy Membrane Glycoproteins/immunology Membrane Proteins Models, Immunological Natural Cytotoxicity Triggering Receptor 2 Perforin Pore Forming Cytotoxic Proteins Receptors, Immunologic/immunology Serine Endopeptidases/immunology
Chemicals
Adaptor Proteins, Signal Transducing Membrane Glycoproteins Membrane Proteins NCR2 protein, human Natural Cytotoxicity Triggering Receptor 2 Pore Forming Cytotoxic Proteins Receptors, Immunologic TYROBP protein, human Perforin GZMB protein, human GZMM protein, human Granzymes Serine Endopeptidases
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Suck Garnet
Department of Medical Oncology and Hematology, Princess Margaret Hospital/Ontario Cancer Institute, Toronto, Ontario, Canada. garnet.suck@uhn.on.ca
Branch Donald R
Smyth Mark J
Miller Richard G
Vergidis Joanna
Fahim Soad
Keating Armand
Article Info
Journal
Experimental hematology
Abbr.
Exp Hematol
ISSN
0301-472X
Published
2005-10-00
Pages
1160-71
Language
English
Region
Netherlands
NLM ID
0402313
Subset
IM
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