Conformational plasticity of RAS Q61 family of neoepitopes results in distinct features for targeted recognition.

McShan, Andrew C; Flores-Solis, David; Sun, Yi; Garfinkle, Samuel E; Toor, Jugmohit S; Young, Michael C; Sgourakis, Nikolaos G · Nat Commun · 2023

basic_science · Level V

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Abstract

The conformational landscapes of peptide/human leucocyte antigen (pHLA) protein complexes encompassing tumor neoantigens provide a rationale for target selection towards autologous T cell, vaccine, and antibody-based therapeutic modalities. Here, using complementary biophysical and computational methods, we characterize recurrent RAS<sub>55-64</sub> Q61 neoepitopes presented by the common HLA-A*01:01 allotype. We integrate sparse NMR restraints with Rosetta docking to determine the solution structure of NRAS<sup>Q61K</sup>/HLA-A*01:01, which enables modeling of other common RAS<sub>55-64</sub> neoepitopes. Hydrogen/deuterium exchange mass spectrometry experiments alongside molecular dynamics simulations reveal differences in solvent accessibility and conformational plasticity across a panel of common Q61 neoepitopes that are relevant for recognition by immunoreceptors. Finally, we predict binding and provide structural models of NRAS<sup>Q61K</sup> antigens spanning the entire HLA allelic landscape, together with in vitro validation for HLA-A*01:191, HLA-B*15:01, and HLA-C*08:02. Our work provides a basis to delineate the solution surface features and immunogenicity of clinically relevant neoepitope/HLA targets for cancer therapy.

Medical subject headings