Investigating the structure of the DENV-2 envelope protein in complex with the EDE2 B7 antibody using metadynamics simulations

Dengue is a serious disease with a particularly high transmission rate in the tropics. There is currently only one WHO-approved vaccine, but it has limitations. A key therapeutic target on the dengue virus is the envelope glycoprotein (E protein) dimer which coats the outer surface. A new type of...

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Main Author: Lim, Eric Jit-Kai
Other Authors: Lu Lanyuan
Format: Final Year Project
Language:English
Published: 2016
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Online Access:http://hdl.handle.net/10356/69194
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Institution: Nanyang Technological University
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spelling sg-ntu-dr.10356-691942023-02-28T18:01:08Z Investigating the structure of the DENV-2 envelope protein in complex with the EDE2 B7 antibody using metadynamics simulations Lim, Eric Jit-Kai Lu Lanyuan School of Biological Sciences DRNTU::Science::Biological sciences Dengue is a serious disease with a particularly high transmission rate in the tropics. There is currently only one WHO-approved vaccine, but it has limitations. A key therapeutic target on the dengue virus is the envelope glycoprotein (E protein) dimer which coats the outer surface. A new type of antibody has been discovered that binds to the E-dimer dependent epitope (EDE) which involves both monomers within the same epitope. However, the exact mechanism of action is unknown. It is possible that it locks the monomers to prevent subsequent acid-induced dissociation and trimerisation that are required for viral fusion with the cell. A computer simulation study was designed to investigate the mechanism of the EDE2 B7 antibody in complex with the soluble ectodomain of the E dimer. Metadynamics was used in molecular dynamics simulations of the E protein dimer with and without the antibody in neutral and acidic conditions. Bias potentials were applied on the collective variables of inter-dimer contacts, inter-dimer distance and root-mean square deviation during the simulation to enhance conformational sampling. Acidic conditions were found to destabilise the dimer while the presence of the antibody maintained the binding between the monomers, thus highlighting the therapeutic potential of this antibody. Bachelor of Science in Biological Sciences 2016-11-22T02:54:38Z 2016-11-22T02:54:38Z 2016 Final Year Project (FYP) http://hdl.handle.net/10356/69194 en Nanyang Technological University 32 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Science::Biological sciences
spellingShingle DRNTU::Science::Biological sciences
Lim, Eric Jit-Kai
Investigating the structure of the DENV-2 envelope protein in complex with the EDE2 B7 antibody using metadynamics simulations
description Dengue is a serious disease with a particularly high transmission rate in the tropics. There is currently only one WHO-approved vaccine, but it has limitations. A key therapeutic target on the dengue virus is the envelope glycoprotein (E protein) dimer which coats the outer surface. A new type of antibody has been discovered that binds to the E-dimer dependent epitope (EDE) which involves both monomers within the same epitope. However, the exact mechanism of action is unknown. It is possible that it locks the monomers to prevent subsequent acid-induced dissociation and trimerisation that are required for viral fusion with the cell. A computer simulation study was designed to investigate the mechanism of the EDE2 B7 antibody in complex with the soluble ectodomain of the E dimer. Metadynamics was used in molecular dynamics simulations of the E protein dimer with and without the antibody in neutral and acidic conditions. Bias potentials were applied on the collective variables of inter-dimer contacts, inter-dimer distance and root-mean square deviation during the simulation to enhance conformational sampling. Acidic conditions were found to destabilise the dimer while the presence of the antibody maintained the binding between the monomers, thus highlighting the therapeutic potential of this antibody.
author2 Lu Lanyuan
author_facet Lu Lanyuan
Lim, Eric Jit-Kai
format Final Year Project
author Lim, Eric Jit-Kai
author_sort Lim, Eric Jit-Kai
title Investigating the structure of the DENV-2 envelope protein in complex with the EDE2 B7 antibody using metadynamics simulations
title_short Investigating the structure of the DENV-2 envelope protein in complex with the EDE2 B7 antibody using metadynamics simulations
title_full Investigating the structure of the DENV-2 envelope protein in complex with the EDE2 B7 antibody using metadynamics simulations
title_fullStr Investigating the structure of the DENV-2 envelope protein in complex with the EDE2 B7 antibody using metadynamics simulations
title_full_unstemmed Investigating the structure of the DENV-2 envelope protein in complex with the EDE2 B7 antibody using metadynamics simulations
title_sort investigating the structure of the denv-2 envelope protein in complex with the ede2 b7 antibody using metadynamics simulations
publishDate 2016
url http://hdl.handle.net/10356/69194
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