Ligand binding and homology modelling of insect odorant-binding proteins

A - Papers appearing in refereed journals

Venthur, H., Mutis, A., Zhou, J-J. and Quiroz, A. 2014. Ligand binding and homology modelling of insect odorant-binding proteins. Physiological Entomology. 39 (3), pp. 183-198. https://doi.org/10.1111/phen.12066

AuthorsVenthur, H., Mutis, A., Zhou, J-J. and Quiroz, A.
Abstract

This review describes the main characteristics of odorant-binding proteins (OBPs) for homology modelling and presents a summary of structure prediction studies on insect OBPs, along with the steps involved and some limitations and improvements. The technique involves a computing approach to model protein structures and is based on a comparison between a target (unknown structure) and one or more templates (experimentally determined structures). As targets for structure prediction, OBPs are considered to play a functional role for recognition, desorption, scavenging, protection and transportation of hydrophobic molecules (odourants) across an aqueous environment (lymph) to olfactory receptor neurones (ORNs) located in sensilla, the main olfactory units of insect antennae. Lepidopteran pheromone-binding proteins, a subgroup of OBPs, are characterized by remarkable structural features, in which high sequence identities (approximately 30%) among these OBPs and a large number of available templates can facilitate the prediction of precise homology models. Approximately 30 studies have been performed on insect OBPs using homology modelling as a tool to predict their structures. Although some of the studies have assessed ligand-binding affinity using structural information and biochemical measurements, few have performed docking and molecular dynamic (MD) simulations as a virtual method to predict best ligands. Docking and MD simulations are discussed in the context of discovery of novel semiochemicals (super-ligands) using homology modelling to conceive further strategies in insect management.

KeywordsEntomology
Year of Publication2014
JournalPhysiological Entomology
Journal citation39 (3), pp. 183-198
Digital Object Identifier (DOI)https://doi.org/10.1111/phen.12066
Open accessPublished as ‘gold’ (paid) open access
FunderBiotechnology and Biological Sciences Research Council
CONICYT
Department of Environment, Food and Rural Affairs
Funder project or codeDelivering Sustainable Systems (SS) [ISPG]
The improved understanding of the causes distribution and scale of acute oak decline in the UK: incidence distribution and severity
Innovative approaches to pest management
UK-China Collaboration for production of biologically active homoisoprenoids and their eventual use for pest control
21110933
Publisher's version
Output statusPublished
Publication dates
Online21 Aug 2014
Publication process dates
Accepted01 Jun 2014
Copyright licenseCC BY
PublisherWiley
Grant ID21110933
ISSN0307-6962

Permalink - https://repository.rothamsted.ac.uk/item/8qz28/ligand-binding-and-homology-modelling-of-insect-odorant-binding-proteins

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