Literature DB >> 35988132

TCR extracellular domain genetically linked to CD28, 2B4/41BB and DAP10/CD3ζ -engineered NK cells mediates antitumor effects.

Shance Li1, Chaoting Zhang1, Luyan Shen1, Xia Teng1, Yefei Xiao1, Bentong Yu2,3,4, Zheming Lu5.   

Abstract

NK cells, especially FDA-approved NK-92 cells, could be used for TCR engineering owing to their specialized cytotoxicity against tumors, safety profile and potential use as an off-the-shelf cellular therapy. The TCR complex requires assembly of TCR- α/ β chains with CD3 molecules (CD3δ, CD3γ, CD3ε, CD3ζ) to be correctly expressed at the cell membrane, and yet NK cells lack expression of these CD3 subunits besides CD3ζ. Since transmembrane regions of TCR α and β chains are involved in TCR complex assembly, transmembrane regions of TCR replaced by CD28 transmembrane domain could result in the expression of TCR independent of its companion CD3 subunits. However, since the absence of CD3 signaling components can influence the transmission of TCR signals to NK cells, it is necessary to add the signaling molecules of NK cells followed by CD28 transmembrane domain. Both CD3ζ and DAP10 play an important role in the activation and cytotoxicity of NK cells; moreover, 2B4 and 4-1BB are the main costimulatory molecules in NK cells. Therefore, we designed a chimeric TCR that consisted of the extracellular domains of the TCR α and β chains specific for NYESO-1 fused to the CD28 transmembrane domain followed by the 41BB and CD3ζ signaling domains as well as the 2B4 and DAP10 signaling domain, respectively. The chimeric TCR genetically engineered NK-92 cells exhibit antigen-specific recognition and lysis of tumor cells both in vitro and in vivo. In addition, TCR-28-2B10/BBζ can be feasibly expressed in primary NK cells and exhibit antigen-reactive recognition and effect function. The overall encouraging data highlight the value of NK-92 cells and primary NK cells engineered to express therapeutic chimeric TCR for adoptive immunotherapies.
© 2022. The Author(s), under exclusive licence to Springer-Verlag GmbH Germany, part of Springer Nature.

Entities:  

Keywords:  Natural killer; TCR; TCR-NK

Year:  2022        PMID: 35988132     DOI: 10.1007/s00262-022-03275-5

Source DB:  PubMed          Journal:  Cancer Immunol Immunother        ISSN: 0340-7004            Impact factor:   6.630


  1 in total

1.  Engineering antigen-specific NK cell lines against the melanoma-associated antigen tyrosinase via TCR gene transfer.

Authors:  Ayhan Parlar; Ece Canan Sayitoglu; Didem Ozkazanc; Anna-Maria Georgoudaki; Cevriye Pamukcu; Mertkaya Aras; Benjamin J Josey; Michael Chrobok; Suzanne Branecki; Pegah Zahedimaram; Lolai Ikromzoda; Evren Alici; Batu Erman; Adil D Duru; Tolga Sutlu
Journal:  Eur J Immunol       Date:  2019-05-17       Impact factor: 5.532

  1 in total

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