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Hines, M. G.

Publications and source records attributed to Hines, M. G..

2 recordsLinked to original sources

Discovery and pre-clinical evaluation of antibodies to the NKG2A inhibitory receptor

NK and CD8+ T cells are important cells for cytolysis of cancer cells. The tumor microenvironment can upregulate surface expression on these cells of NKG2A, an inhibitory receptor that can dampen immune responses to cancer leading to immune evasion. To block NKG2A-mediated inhibition, we discovered and characterized two fully human antibodies using phage and yeast display that bind to NKG2A. These antibodies are highly specific for human CD94/NKG2A heterodimer complex, displaying no binding to the activating NKG2C receptor. A mutagenesis study revealed that the serine residue at 170 position (S170) of NKG2A is critical for the selectivity of anti-NKG2A antibodies. In vitro cytotoxic assays showed that NKG2A antibody inhibitors activated primary NK cells and promoted ADCC function of specific antibodies that bind to antigens expressed on cancer cells. Summary headingFully human antibodies to the NKG2A inhibitory receptor

immunology↗

Potent Neutralization of Omicron and other SARS-CoV-2 Variants of Concern by Biparatopic Human VH Domains

The emergence of SARS-CoV-2 variants of concern (VOCs) requires the development of next-generation biologics that are effective against a variety of strains of the virus. Herein, we characterize a human VH domain, F6, which we generated by sequentially panning large phage displayed VH libraries against receptor binding domains (RBDs) containing VOC mutations. Cryo-EM analyses reveal that F6 has a unique binding mode that spans a broad surface of the RBD and involves the antibody framework region. Attachment of an Fc region to a fusion of F6 and ab8, a previously characterized VH domain, resulted in a construct (F6-ab8-Fc) that neutralized Omicron pseudoviruses with a half-maximal neutralizing concentration (IC50) of 4.8 nM in vitro. Additionally, prophylactic treatment using F6-ab8-Fc reduced live Beta (B.1.351) variant viral titers in the lungs of a mouse model. Our results provide a new potential therapeutic against SARS-CoV-2 VOCs - including the recently emerged Omicron variant - and highlight a vulnerable epitope within the spike protein RBD that may be exploited to achieve broad protection against circulating variants.

immunology↗