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Review
. 2021 Jun 7;86(6):938-945.
doi: 10.1002/cplu.202100134. Online ahead of print.

On-Cell NMR Contributions to Membrane Receptor Binding Characterization

Affiliations
Review

On-Cell NMR Contributions to Membrane Receptor Binding Characterization

Theresa Höfurthner et al. Chempluschem. .

Abstract

NMR spectroscopy has matured into a powerful tool to characterize interactions between biological molecules at atomic resolution, most importantly even under near to native (physiological) conditions. The field of in-cell NMR aims to study proteins and nucleic acids inside living cells. However, cells interrogate their environment and are continuously modulated by external stimuli. Cell signaling processes are often initialized by membrane receptors on the cell surface; therefore, characterizing their interactions at atomic resolution by NMR, hereafter referred as on-cell NMR, can provide valuable mechanistic information. This review aims to summarize recent on-cell NMR tools that give information about the binding site and the affinity of membrane receptors to their ligands together with potential applications to in vivo drug screening systems.

Keywords: in-vivo NMR; membrane proteins; molecular recognition; on-cell NMR; protein-protein interactions.

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References

    1. J. A. Lyons, A. Shahsavar, P. A. Paulsen, B. P. Pedersen, P. Nissen, Curr. Opin. Struct. Biol. 2016, 38, 137-144.
    1. W. A. Hendrickson, Nat. Struct. Mol. Biol. 2017, 23, 464-467.
    1. C. C. Valley, A. K. Lewis, J. N. Sachs, BBA-Biomembranes 2017, 1859, 1398-1416.
    1. B. Meyer, T. Peters, Angew. Chem. Int. Ed. Engl. 2003, 42, 864-90.
    1. A. D. Gossert, W. Jahnke, Prog. Nucl. Magn. Reson. Spectrosc. 2016, 97, 82-125.

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