Venomous animals produce a diverse range of peptides and small molecules that are of both therapeutic and pharmacologic value. One such animal, the cone snail, produces peptides known as conotoxins, which may be of interest to those studying the mammalian immune system. Conotoxins are a family of venom peptides that display extraordinary diversity and often exquisite specificity for membrane protein targets, especially voltage and ligand activated ion channels. Conopeptides are proving to be important pharmacological tools to probe human physiology, with some showing promise as therapeutics for conditions such as neuropathic pain. The potential of these peptides to interact and modulate the human immune system has not been investigated desp...
Venomous marine cone snails harbour a variety of small disulfide-rich peptides called conotoxins, wh...
Voltage-gated ion channels are plasma membrane proteins that generate electrical signals following a...
Animal venoms represent a vast library of bioactive peptides and proteins with proven potential not ...
Venom peptides offer enormous opportunity for the discovery of peptide drug leads. This review focus...
Conopeptides are a diverse group of recently evolved venom peptides used for prey capture and/or def...
Marine molluscs known as cone snails produce beautiful shells and a complex array of over 50,000 ven...
International audienceConopeptides are a diverse group of recently evolved venom peptides used for p...
Cone sail venoms contain a vast array of bioactive peptides with a range of different properties, ac...
Peptides found within cone snail venom (i.e. conotoxins) have neuroexcititory or neuroinhibitory act...
Abstract: The pharmacological variety of conotoxins, diverse peptides found in the venoms of marine ...
Marine snails of the genus Conus are a large family of predatory gastropods with an unparalleled mol...
Conopeptides are a large family of peptide toxins produced by marine cone snails. They act with high...
Animal venom peptides represent valuable compounds for biomedical exploration. The venoms of marine ...
Animal venom peptides represent valuable compounds for biomedical exploration. The venoms of marine ...
ABSTRACT: Highly structured small peptides are the major toxic constituents of the venom of cone sna...
Venomous marine cone snails harbour a variety of small disulfide-rich peptides called conotoxins, wh...
Voltage-gated ion channels are plasma membrane proteins that generate electrical signals following a...
Animal venoms represent a vast library of bioactive peptides and proteins with proven potential not ...
Venom peptides offer enormous opportunity for the discovery of peptide drug leads. This review focus...
Conopeptides are a diverse group of recently evolved venom peptides used for prey capture and/or def...
Marine molluscs known as cone snails produce beautiful shells and a complex array of over 50,000 ven...
International audienceConopeptides are a diverse group of recently evolved venom peptides used for p...
Cone sail venoms contain a vast array of bioactive peptides with a range of different properties, ac...
Peptides found within cone snail venom (i.e. conotoxins) have neuroexcititory or neuroinhibitory act...
Abstract: The pharmacological variety of conotoxins, diverse peptides found in the venoms of marine ...
Marine snails of the genus Conus are a large family of predatory gastropods with an unparalleled mol...
Conopeptides are a large family of peptide toxins produced by marine cone snails. They act with high...
Animal venom peptides represent valuable compounds for biomedical exploration. The venoms of marine ...
Animal venom peptides represent valuable compounds for biomedical exploration. The venoms of marine ...
ABSTRACT: Highly structured small peptides are the major toxic constituents of the venom of cone sna...
Venomous marine cone snails harbour a variety of small disulfide-rich peptides called conotoxins, wh...
Voltage-gated ion channels are plasma membrane proteins that generate electrical signals following a...
Animal venoms represent a vast library of bioactive peptides and proteins with proven potential not ...