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cryogenic electron microscopy structure protein databank (pdb) id: 5ire  (Databank Inc)

 
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    Structured Review

    Databank Inc cryogenic electron microscopy structure protein databank (pdb) id: 5ire
    From left to right: Weighted isolated protein flexibility, weighted VLP protein flexibility, and the linearly combined, flexibility model are depicted over the mature ZIKV cryo-EM reconstruction (PDB ID: <t>5IRE)</t> (scales shown). VLP structures are oriented with the five-fold rotational icosahedral symmetry axis coming out of the figure plane.
    Cryogenic Electron Microscopy Structure Protein Databank (Pdb) Id: 5ire, supplied by Databank Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/cryogenic+electron+microscopy+structure+protein+databank+(pdb)+id%3A+5ire/cryogenic+electron+microscopy+structure+protein+databank++pdb++id++5ire/pmc10016673-160-23-20
    Average 90 stars, based on 1 article reviews
    cryogenic electron microscopy structure protein databank (pdb) id: 5ire - by Bioz Stars, 2026-09
    90/100 stars

    Images

    1) Product Images from "B-cell epitope discovery: The first protein flexibility-based algorithm–Zika virus conserved epitope demonstration"

    Article Title: B-cell epitope discovery: The first protein flexibility-based algorithm–Zika virus conserved epitope demonstration

    Journal: PLOS ONE

    doi: 10.1371/journal.pone.0262321

    From left to right: Weighted isolated protein flexibility, weighted VLP protein flexibility, and the linearly combined, flexibility model are depicted over the mature ZIKV cryo-EM reconstruction (PDB ID: 5IRE) (scales shown). VLP structures are oriented with the five-fold rotational icosahedral symmetry axis coming out of the figure plane.
    Figure Legend Snippet: From left to right: Weighted isolated protein flexibility, weighted VLP protein flexibility, and the linearly combined, flexibility model are depicted over the mature ZIKV cryo-EM reconstruction (PDB ID: 5IRE) (scales shown). VLP structures are oriented with the five-fold rotational icosahedral symmetry axis coming out of the figure plane.

    Techniques Used: Isolation, Cryo-EM Sample Prep

    Predicted conserved epitopes are represented in yellow on the ZIKV cryo-EM reconstruction backbone (red) (PDB ID: 5IRE) . The cryo-EM reconstruction is shown with the five-fold rotational icosahedral symmetry axis coming out of the figure plane.
    Figure Legend Snippet: Predicted conserved epitopes are represented in yellow on the ZIKV cryo-EM reconstruction backbone (red) (PDB ID: 5IRE) . The cryo-EM reconstruction is shown with the five-fold rotational icosahedral symmetry axis coming out of the figure plane.

    Techniques Used: Cryo-EM Sample Prep



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    Databank Inc cryogenic electron microscopy structure protein databank (pdb) id: 5ire
    From left to right: Weighted isolated protein flexibility, weighted VLP protein flexibility, and the linearly combined, flexibility model are depicted over the mature ZIKV cryo-EM reconstruction (PDB ID: <t>5IRE)</t> (scales shown). VLP structures are oriented with the five-fold rotational icosahedral symmetry axis coming out of the figure plane.
    Cryogenic Electron Microscopy Structure Protein Databank (Pdb) Id: 5ire, supplied by Databank Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/cryogenic+electron+microscopy+structure+protein+databank+(pdb)+id%3A+5ire/cryogenic+electron+microscopy+structure+protein+databank++pdb++id++5ire/pmc10016673-160-23-20
    Average 90 stars, based on 1 article reviews
    cryogenic electron microscopy structure protein databank (pdb) id: 5ire - by Bioz Stars, 2026-09
    90/100 stars
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    From left to right: Weighted isolated protein flexibility, weighted VLP protein flexibility, and the linearly combined, flexibility model are depicted over the mature ZIKV cryo-EM reconstruction (PDB ID: 5IRE) (scales shown). VLP structures are oriented with the five-fold rotational icosahedral symmetry axis coming out of the figure plane.

    Journal: PLOS ONE

    Article Title: B-cell epitope discovery: The first protein flexibility-based algorithm–Zika virus conserved epitope demonstration

    doi: 10.1371/journal.pone.0262321

    Figure Lengend Snippet: From left to right: Weighted isolated protein flexibility, weighted VLP protein flexibility, and the linearly combined, flexibility model are depicted over the mature ZIKV cryo-EM reconstruction (PDB ID: 5IRE) (scales shown). VLP structures are oriented with the five-fold rotational icosahedral symmetry axis coming out of the figure plane.

    Article Snippet: ZIKV chains A, B, C, and E were extracted from a 3.80 Å resolution, cryogenic electron microscopy (cryo-EM) structure (Protein Databank (PDB) ID: 5IRE) [ ].

    Techniques: Isolation, Cryo-EM Sample Prep

    Predicted conserved epitopes are represented in yellow on the ZIKV cryo-EM reconstruction backbone (red) (PDB ID: 5IRE) . The cryo-EM reconstruction is shown with the five-fold rotational icosahedral symmetry axis coming out of the figure plane.

    Journal: PLOS ONE

    Article Title: B-cell epitope discovery: The first protein flexibility-based algorithm–Zika virus conserved epitope demonstration

    doi: 10.1371/journal.pone.0262321

    Figure Lengend Snippet: Predicted conserved epitopes are represented in yellow on the ZIKV cryo-EM reconstruction backbone (red) (PDB ID: 5IRE) . The cryo-EM reconstruction is shown with the five-fold rotational icosahedral symmetry axis coming out of the figure plane.

    Article Snippet: ZIKV chains A, B, C, and E were extracted from a 3.80 Å resolution, cryogenic electron microscopy (cryo-EM) structure (Protein Databank (PDB) ID: 5IRE) [ ].

    Techniques: Cryo-EM Sample Prep