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    Structural basis of the dynamic human CEACAM1 monomer-dimer equilibrium

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    Author
    Gandhi, A.K.
    Sun, Z.-Y.J.
    Kim, W.M.
    Huang, Y.-H.
    Kondo, Y.
    Bonsor, D.A.
    Sundberg, E.J.
    Wagner, G.
    Kuchroo, V.K.
    Petsko, G.A.
    Blumberg, R.S.
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    Date
    2021-03-19
    Journal
    Communications Biology
    Publisher
    Nature Research
    Type
    Article
    
    Metadata
    Show full item record
    See at
    https://doi.org/10.1038/s42003-021-01871-2
    Abstract
    Human (h) carcinoembryonic antigen-related cell adhesion molecule 1 (CEACAM1) function depends upon IgV-mediated homodimerization or heterodimerization with host ligands, including hCEACAM5, hTIM-3, PD-1, and a variety of microbial pathogens. However, there is little structural information available on how hCEACAM1 transitions between monomeric and dimeric states which in the latter case is critical for initiating hCEACAM1 activities. We therefore mutated residues within the hCEACAM1 IgV GFCC? face including V39, I91, N97, and E99 and examined hCEACAM1 IgV monomer-homodimer exchange using differential scanning fluorimetry, multi-angle light scattering, X-ray crystallography and/or nuclear magnetic resonance. From these studies, we describe hCEACAM1 homodimeric, monomeric and transition states at atomic resolution and its conformational behavior in solution through NMR assignment of the wildtype (WT) hCEACAM1 IgV dimer and N97A mutant monomer. These studies reveal the flexibility of the GFCC' face and its important role in governing the formation of hCEACAM1 dimers and selective heterodimers. Copyright 2021, The Author(s).
    Sponsors
    This work was supported by the NIH Grant 5R01DK051362-21 and the High Pointe Foundation to R.S.B., and 5P01AI073748-09 to V.K.K.
    Keyword
    monomer-dimer equilibrium
    Carcinoembryonic Antigen--physiology
    Identifier to cite or link to this item
    http://hdl.handle.net/10713/15163
    ae974a485f413a2113503eed53cd6c53
    10.1038/s42003-021-01871-2
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