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Biology subjects

Burt, B. D.

Publications and source records attributed to Burt, B. D..

2 recordsLinked to original sources

Exploiting HLA-II Promiscuity via Peptide Terminal Overhang Recognition for Pan-Allelic and Tumor-Selective AML Immunotherapy

Antibodies targeting peptides presented by human leukocyte antigen (HLA) molecules expand the therapeutic landscape by enabling recognition of intracellular antigens. While most efforts have focused on allele-restricted peptides presented by HLA class I (HLA-I), HLA class II (HLA-II) epitopes remain underexplored despite their potential for promiscuous presentation. Acute myeloid leukemia (AML) is characterized by high expression of both HLA-II and the myeloid lineage antigen myeloperoxidase (MPO). Here, we identified an MPO-derived epitope (MPO100-132) that is promiscuously presented by multiple HLA-II molecules. We generated a MPO100-132-specific antibody (146D5) that recognizes the N-terminal overhang of this peptide independent of specific HLA contacts, enabling pan-allelic recognition. Engineered into bispecific T cell engagers (BiTEs), this antibody mediated robust cytotoxicity against primary AML samples across diverse HLA-II backgrounds. Crucially, 146D5-based BiTEs selectively spared normal myeloid cells, indicating that the MPO100-132 peptide, derived from the MPO propeptide, was functionally undetectable in normal myeloid cells, providing a significant safety window. In vivo, the MPO-targeting BiTE demonstrated potent antitumor activity and prolonged survival in AML xenograft models. Our findings identify peptide terminal overhangs as an actionable class of antibody targets and introduce a strategy to exploit HLA-II promiscuity for broadly applicable HLA-dependent but allele-agnostic immunotherapies.

immunology↗

Peptide-Specific CAR T cells Recognize WT1 Promiscuously Presented by Diverse HLA Class II Alleles

Chimeric antigen receptor (CAR) technology has revolutionized B-cell malignancy treatment by enabling T cells to effectively recognize and target cancer-specific surface antigens. However, CAR T cells show limited efficacy against other blood cancers and solid tumors due to challenges in identifying suitable surface targets. Here, we present a novel approach to CAR development, targeting the intracellular Wilms tumor 1 (WT1) oncoprotein, cross-presented by surface HLA-class II (HLA-II) alleles. WT1-CAR T cells, derived from an antibody raised solely against a WT1 peptide, recognized the WT1330-348 peptide promiscuously presented by 18 out of 20 tested HLA-II alleles, overcoming traditional HLA restrictions. WT1-CAR T cells specifically recognized leukemic cells in a WT1 and HLA-II-dependent manner and mediated an antitumor response in vitro and in vivo. This innovative approach to CAR T cell development transcends traditional HLA restrictions and offers a promising therapeutic option to a wide and genetically diverse patient population. Statement of significanceThis study describes a novel CAR T therapy approach leveraging the distinctive and shared characteristic of HLA-II-peptide binding promiscuity, enabling targeting of the intracellular oncoprotein WT1 presented across diverse HLA-II families. Our study demonstrates a viable framework for designing CAR T therapies that benefit genetically diverse patient populations.

immunology↗