Functional and structural characterization of the inter-domain linker region of the dengue virus serotype 4 NS5 protein

Dengue (DENV) NS5 is well conserved and contains a 9 amino acid linker that lies between methylase and RNA-dependent RNA polymerase domains. The crystal structure of DENV-3 FL NS5 is the first dengue NS5 to be successfully documented and can be used as a reference for future plans to crystalise the...

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Main Author: Ting, Trinda Anne
Other Authors: Lim Siew Pheng
Format: Final Year Project
Language:English
Published: 2015
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Online Access:http://hdl.handle.net/10356/63146
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-631462023-02-28T18:06:54Z Functional and structural characterization of the inter-domain linker region of the dengue virus serotype 4 NS5 protein Ting, Trinda Anne Lim Siew Pheng Julien Lescar School of Biological Sciences Novartis Institute of Tropical Diseases DRNTU::Science::Biological sciences::Microbiology::Virology Dengue (DENV) NS5 is well conserved and contains a 9 amino acid linker that lies between methylase and RNA-dependent RNA polymerase domains. The crystal structure of DENV-3 FL NS5 is the first dengue NS5 to be successfully documented and can be used as a reference for future plans to crystalise the rest of the dengue NS5 proteins and infer possible intra-molecular interactions within the NS5. Further study of the flexible interdomain linker region (IDLR) and its role in the polymerase activity of the DENV-4 NS5 was conducted by mutating different residues into alanine and then measuring the mutants’ de novo (dn) initiation and elongation abilities. DENV infection cell based experiments were also carried out to measure replicative ability of the mutant NS5 proteins. Results showed that firstly, alanine mutations on the IDLR generally reduced in vitro dnI activity but increased elongation ability, indicating that a loss in intramolecular interactions that result in a conformation that favours and upregulates elongation; secondly, effects could enhance in vitro activity but become lethal in the cell. Together, this study allows for a better understanding of the role of IDLR in the function and structure of DENV-4 FL NS5 in the development of its anti-viral agent. Bachelor of Science in Biological Sciences 2015-05-06T08:53:35Z 2015-05-06T08:53:35Z 2015 2015 Final Year Project (FYP) http://hdl.handle.net/10356/63146 en Nanyang Technological University 40 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::Microbiology::Virology
spellingShingle DRNTU::Science::Biological sciences::Microbiology::Virology
Ting, Trinda Anne
Functional and structural characterization of the inter-domain linker region of the dengue virus serotype 4 NS5 protein
description Dengue (DENV) NS5 is well conserved and contains a 9 amino acid linker that lies between methylase and RNA-dependent RNA polymerase domains. The crystal structure of DENV-3 FL NS5 is the first dengue NS5 to be successfully documented and can be used as a reference for future plans to crystalise the rest of the dengue NS5 proteins and infer possible intra-molecular interactions within the NS5. Further study of the flexible interdomain linker region (IDLR) and its role in the polymerase activity of the DENV-4 NS5 was conducted by mutating different residues into alanine and then measuring the mutants’ de novo (dn) initiation and elongation abilities. DENV infection cell based experiments were also carried out to measure replicative ability of the mutant NS5 proteins. Results showed that firstly, alanine mutations on the IDLR generally reduced in vitro dnI activity but increased elongation ability, indicating that a loss in intramolecular interactions that result in a conformation that favours and upregulates elongation; secondly, effects could enhance in vitro activity but become lethal in the cell. Together, this study allows for a better understanding of the role of IDLR in the function and structure of DENV-4 FL NS5 in the development of its anti-viral agent.
author2 Lim Siew Pheng
author_facet Lim Siew Pheng
Ting, Trinda Anne
format Final Year Project
author Ting, Trinda Anne
author_sort Ting, Trinda Anne
title Functional and structural characterization of the inter-domain linker region of the dengue virus serotype 4 NS5 protein
title_short Functional and structural characterization of the inter-domain linker region of the dengue virus serotype 4 NS5 protein
title_full Functional and structural characterization of the inter-domain linker region of the dengue virus serotype 4 NS5 protein
title_fullStr Functional and structural characterization of the inter-domain linker region of the dengue virus serotype 4 NS5 protein
title_full_unstemmed Functional and structural characterization of the inter-domain linker region of the dengue virus serotype 4 NS5 protein
title_sort functional and structural characterization of the inter-domain linker region of the dengue virus serotype 4 ns5 protein
publishDate 2015
url http://hdl.handle.net/10356/63146
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