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Selective targeting of G‐protein‐coupled receptor subtypes with venom peptides
Author(s) -
Näreoja K.,
Näsman J.
Publication year - 2012
Publication title -
acta physiologica
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.591
H-Index - 116
eISSN - 1748-1716
pISSN - 1748-1708
DOI - 10.1111/j.1748-1716.2011.02305.x
Subject(s) - g protein coupled receptor , venom , receptor , biology , context (archaeology) , conus , peptide , muscarinic acetylcholine receptor , conotoxin , rhodopsin like receptors , biochemistry , metabotropic receptor , agonist , ecology , paleontology
The G‐protein‐coupled receptor (GPCR) family is one of the largest gene superfamilies with approx. 370 members responding to endogenous ligands in humans and a roughly equal amount of receptors sensitive to external stimuli from the surrounding. A number of receptors from this superfamily are well recognized targets for medical treatment of various disease conditions, whereas for many others the potential medical benefit of interference is still obscure. A general problem associated with GPCR research and therapeutics is the insufficient specificity of available ligands to differentiate between closely homologous receptor subtypes. In this context, venom peptides could make a significant contribution to the development of more specific drugs.Venoms from certain animals specialized in biochemical hunting contain a mixture of molecules that are directed towards a variety of membrane proteins. Peptide toxins isolated from these mixtures usually exhibit high specificity for their targets. Muscarinic toxins found from mamba snakes attracted much attention during the 1990s. These are 65–66 amino acid long peptides with a structural three‐finger folding similar to the α‐neurotoxins and they target the muscarinic acetylcholine receptors in a subtype‐selective manner. Recently, several members of the three‐finger toxins from mamba snakes as well as conotoxins from marine cone snails have been shown to selectively interact with subtypes of adrenergic receptors.In this review, we will discuss the GPCR‐directed peptide toxins found from different venoms and how some of these can be useful in exploring specific roles of receptor subtypes.