Selected article for: "cryo em and RBD domain"

Author: Susmita Roy
Title: Dynamical asymmetry exposes 2019-nCoV prefusion spike
  • Document date: 2020_4_22
  • ID: 29n9tsk9_9
    Snippet: In this study, sequence and interaction level (Fig. S5, Fig. S1 ) comparison has been made over the Cryo-EM structure of SARS-CoV-2 S (pdb: 6vsb), SARS-CoV S (pdb:5x5b) and MERS-CoV S (pdb: 5x5f) (7, 12) . This comparison results that SARS-CoV-2 S has NTD-RBD domain association where a proline residue of ChainA forms CH-п type interaction with the tyrosine residue (28) and hydrophobic interaction with another proline of ChainB (Fig. 4A, Fig. aut.....
    Document: In this study, sequence and interaction level (Fig. S5, Fig. S1 ) comparison has been made over the Cryo-EM structure of SARS-CoV-2 S (pdb: 6vsb), SARS-CoV S (pdb:5x5b) and MERS-CoV S (pdb: 5x5f) (7, 12) . This comparison results that SARS-CoV-2 S has NTD-RBD domain association where a proline residue of ChainA forms CH-п type interaction with the tyrosine residue (28) and hydrophobic interaction with another proline of ChainB (Fig. 4A, Fig. author/funder. All rights reserved. No reuse allowed without permission.

    Search related documents:
    Co phrase search for related documents
    • chainb proline and proline residue: 1
    • chainb proline and type interaction: 1
    • chainb proline hydrophobic interaction and hydrophobic interaction: 1
    • chainb proline hydrophobic interaction and proline residue: 1
    • chainb proline hydrophobic interaction and type interaction: 1
    • Cryo EM structure and hydrophobic interaction: 1, 2, 3
    • Cryo EM structure and interaction level: 1, 2
    • hydrophobic interaction and interaction level: 1
    • hydrophobic interaction and proline residue: 1
    • hydrophobic interaction and type interaction: 1, 2
    • interaction level and type interaction: 1, 2
    • proline residue and type interaction: 1