bioRxiv · 10.1101/2020.01.24.916932
A biomimetic five-module chimeric antigen receptor (5MCAR) designed to target and eliminate antigen-specific T cells
Abstract
T cells express clonotypic T cell receptors (TCRs) that recognize peptide antigens in the context of class I or II MHC molecules (pMHCI/II). These receptor modules associate with three signaling modules (CD3{gamma}{varepsilon}, {delta}{varepsilon}, and {zeta}{zeta}), and work in concert with a coreceptor module (either CD8 or CD4), to drive T cell activation in response to pMHCI/II. Here we describe a first generation biomimetic 5-module chimeric antigen receptor (5MCAR). We show that: (i) chimeric receptor modules built with the ectodomains of pMHCII assemble with CD3 signaling modules into complexes that redirect cytotoxic T lymphocyte (CTL) specificity and function in response to the clonotypic TCRs of pMHCII-specific CD4+ T cells; and, (ii) surrogate coreceptor modules enhance the function of these complexes. Furthermore, we demonstrate that adoptively transferred 5MCAR-CTLs can mitigate type I diabetes by targeting autoimmune CD4+ T cells in NOD mice. This work provides a framework for the construction of biomimetic 5MCARs that can be used as tools to study the impact of particular antigen-specific T cells in immune responses, and may hold potential for ameliorating diseases mediated by pathogenic T cells.
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Kobayashi, S., Thelin, M. A., Parrish, H. L., Deshpande, N. R., Lee, M. S., Karimzadeh, A., Niewczas, M. A., Serwold, T., Kuhns, M. S.. 2020-01-25. A biomimetic five-module chimeric antigen receptor (5MCAR) designed to target and eliminate antigen-specific T cells. https://doi.org/10.1101/2020.01.24.916932
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