Structure and dynamics of membrane-associated ICP47, a viral inhibitor of the MHC I antigen-processing machinery

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Abstract

To evade the host's immune response, herpes simplex virus employs the immediate early gene product ICP47 (IE12) to suppress antigen presentation to cytotoxic T-lymphocytes by inhibition of the ATP-binding cassette transporter associated with antigen processing (TAP). ICP47 is a membrane-associated protein adopting an α-helical conformation. Its active domain was mapped to residues 3-34 and shown to encode all functional properties of the full-length protein. The active domain of ICP47 was reconstituted into oriented phospholipid bilayers and studied by proton-decoupled 15N and 2H solid-state NMR spectroscopy. In phospholipid bilayers, the protein adopts a helix-loop-helix structure, where the average tilt angle of the helices relative to the membrane surface is ∼15° (±7°). The alignment of both structured domains exhibits a mosaic spread of ∼10°. A flexible dynamic loop encompassing residues 17 and 18 separates the two helices. Refinement of the experimental data indicates that helix 1 inserts more deeply into the membrane. These novel insights into the structure of ICP47 represent an important step toward a molecular understanding of the immune evasion mechanism of herpes simplex virus and are instrumental for the design of new therapeutics. © 2006 by The American Society for Biochemistry and Molecular Biology, Inc.

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Aisenbrey, C., Sizun, C., Koch, J., Herget, M., Abele, R., Bechinger, B., & Tampé, R. (2006). Structure and dynamics of membrane-associated ICP47, a viral inhibitor of the MHC I antigen-processing machinery. Journal of Biological Chemistry, 281(41), 30365–30372. https://doi.org/10.1074/jbc.M603000200

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