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Inhibiting Amyloid-ß cytotoxicity through its interaction with the cell surface receptor LilrB2 by structure-based design

Inhibiting the interaction between ß-amyloid (Aß) and a neuronal cell surface receptor, LilrB2, has been suggested as a potential route for treating Alzheimer’s disease (AD). Supporting this approach, AD-like symptoms are reduced in mouse models following genetic depletion of the LilrB2 homolog. In...

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Autores principales: Cao, Qin, Shin, Woo Shik, Chan, Henry, Vuong, Celine K., Dubois, Bethany, Li, Binsen, Sawaya, Michael R., Feigon, Juli, Black, Douglas L., Eisenberg, David S., Jiang, Lin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6250578/
https://www.ncbi.nlm.nih.gov/pubmed/30297750
http://dx.doi.org/10.1038/s41557-018-0147-z
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author Cao, Qin
Shin, Woo Shik
Chan, Henry
Vuong, Celine K.
Dubois, Bethany
Li, Binsen
Sawaya, Michael R.
Feigon, Juli
Black, Douglas L.
Eisenberg, David S.
Jiang, Lin
author_facet Cao, Qin
Shin, Woo Shik
Chan, Henry
Vuong, Celine K.
Dubois, Bethany
Li, Binsen
Sawaya, Michael R.
Feigon, Juli
Black, Douglas L.
Eisenberg, David S.
Jiang, Lin
author_sort Cao, Qin
collection PubMed
description Inhibiting the interaction between ß-amyloid (Aß) and a neuronal cell surface receptor, LilrB2, has been suggested as a potential route for treating Alzheimer’s disease (AD). Supporting this approach, AD-like symptoms are reduced in mouse models following genetic depletion of the LilrB2 homolog. In its pathogenic, oligomeric state, Aß binds to LilrB2, triggering a pathway to synaptic loss. Here we identified the LilrB2 binding moieties of Aß ((16)KLVFFA(21)) and identified its binding site on LilrB2 from a crystal structure of LilrB2 immunoglobulin domains D1D2 complexed to small molecules that mimic phenylalanine residues. In this structure, we observed two pockets that can accommodate the phenylalanine sidechains of KLVFFA. These pockets were confirmed to be (16)KLVFFA(21) binding sites by mutagenesis. Rosetta docking revealed a plausible geometry for the Aß-LilrB2 complex and assisted with the structure-guided selection of small molecule inhibitors. These molecules inhibit Aß-LilrB2 interactions in vitro and on the cell surface and reduce Aß cytotoxicity, which suggests these inhibitors are potential therapeutic leads against AD.
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spelling pubmed-62505782019-04-08 Inhibiting Amyloid-ß cytotoxicity through its interaction with the cell surface receptor LilrB2 by structure-based design Cao, Qin Shin, Woo Shik Chan, Henry Vuong, Celine K. Dubois, Bethany Li, Binsen Sawaya, Michael R. Feigon, Juli Black, Douglas L. Eisenberg, David S. Jiang, Lin Nat Chem Article Inhibiting the interaction between ß-amyloid (Aß) and a neuronal cell surface receptor, LilrB2, has been suggested as a potential route for treating Alzheimer’s disease (AD). Supporting this approach, AD-like symptoms are reduced in mouse models following genetic depletion of the LilrB2 homolog. In its pathogenic, oligomeric state, Aß binds to LilrB2, triggering a pathway to synaptic loss. Here we identified the LilrB2 binding moieties of Aß ((16)KLVFFA(21)) and identified its binding site on LilrB2 from a crystal structure of LilrB2 immunoglobulin domains D1D2 complexed to small molecules that mimic phenylalanine residues. In this structure, we observed two pockets that can accommodate the phenylalanine sidechains of KLVFFA. These pockets were confirmed to be (16)KLVFFA(21) binding sites by mutagenesis. Rosetta docking revealed a plausible geometry for the Aß-LilrB2 complex and assisted with the structure-guided selection of small molecule inhibitors. These molecules inhibit Aß-LilrB2 interactions in vitro and on the cell surface and reduce Aß cytotoxicity, which suggests these inhibitors are potential therapeutic leads against AD. 2018-10-08 2018-12 /pmc/articles/PMC6250578/ /pubmed/30297750 http://dx.doi.org/10.1038/s41557-018-0147-z Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Cao, Qin
Shin, Woo Shik
Chan, Henry
Vuong, Celine K.
Dubois, Bethany
Li, Binsen
Sawaya, Michael R.
Feigon, Juli
Black, Douglas L.
Eisenberg, David S.
Jiang, Lin
Inhibiting Amyloid-ß cytotoxicity through its interaction with the cell surface receptor LilrB2 by structure-based design
title Inhibiting Amyloid-ß cytotoxicity through its interaction with the cell surface receptor LilrB2 by structure-based design
title_full Inhibiting Amyloid-ß cytotoxicity through its interaction with the cell surface receptor LilrB2 by structure-based design
title_fullStr Inhibiting Amyloid-ß cytotoxicity through its interaction with the cell surface receptor LilrB2 by structure-based design
title_full_unstemmed Inhibiting Amyloid-ß cytotoxicity through its interaction with the cell surface receptor LilrB2 by structure-based design
title_short Inhibiting Amyloid-ß cytotoxicity through its interaction with the cell surface receptor LilrB2 by structure-based design
title_sort inhibiting amyloid-ß cytotoxicity through its interaction with the cell surface receptor lilrb2 by structure-based design
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6250578/
https://www.ncbi.nlm.nih.gov/pubmed/30297750
http://dx.doi.org/10.1038/s41557-018-0147-z
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