Sea anemones produce proteinaceous toxins for predation and defense, including peptide toxins that act on a large variety of ion channels of pharmacological and biomedical interest. Phymanthus crucifer is commonly found in the Caribbean Sea; however, the chemical structure and biological activity of its toxins remain unknown, with the exception of PhcrTx1, an acid-sensing ion channel (ASIC) inhibitor. Therefore, in the present work, we focused on the isolation and characterization of new P. crucifer toxins by chromatographic fractionation, followed by a toxicity screening on crabs, an evaluation of ion channels, and sequence analysis. Five groups of toxic chromatographic fractions were found, and a new paralyzing toxin was purified and name...
In contrast to the many studies on the venoms of scorpions, spiders, snakes and cone snails, tip to ...
Sea anemone venoms have become a rich source of peptide toxins which are invaluable tools for studyi...
Voltage-gated potassium (KV) channels regulate diverse physiological processes and are an important ...
Sea anemones produce proteinaceous toxins for predation and defense, including peptide toxins that a...
Sea anemones produce proteinaceous toxins for predation and defense, including peptide toxins that a...
Sea anemones produce ion channels peptide toxins of pharmacological and biomedical interest. However...
Sea anemones produce a wide variety of biologically active compounds, such as the proteinaceous neur...
Sea anemones are known to contain a wide diversity of biologically active peptides, mostly unexplore...
The Cnidaria phylum includes organisms that are among the most venomous animals. The Anthozoa class ...
Sea anemones produce a myriad of toxic peptides and proteins of which a large group acts on voltage-...
Peptides have been isolated from several species of sea anemones and shown to block currents through...
AbstractSea anemones are known to contain a wide diversity of biologically active peptides, mostly u...
A peptide toxin, ShK, that blocks voltage-dependent potassium channels was isolated from the whole b...
From a systematic screening of animal venoms, we isolated a new toxin (APETx2) from the sea anemone ...
Sea anemone venoms have long been recognized as a rich source of peptides with interesting pharmacol...
In contrast to the many studies on the venoms of scorpions, spiders, snakes and cone snails, tip to ...
Sea anemone venoms have become a rich source of peptide toxins which are invaluable tools for studyi...
Voltage-gated potassium (KV) channels regulate diverse physiological processes and are an important ...
Sea anemones produce proteinaceous toxins for predation and defense, including peptide toxins that a...
Sea anemones produce proteinaceous toxins for predation and defense, including peptide toxins that a...
Sea anemones produce ion channels peptide toxins of pharmacological and biomedical interest. However...
Sea anemones produce a wide variety of biologically active compounds, such as the proteinaceous neur...
Sea anemones are known to contain a wide diversity of biologically active peptides, mostly unexplore...
The Cnidaria phylum includes organisms that are among the most venomous animals. The Anthozoa class ...
Sea anemones produce a myriad of toxic peptides and proteins of which a large group acts on voltage-...
Peptides have been isolated from several species of sea anemones and shown to block currents through...
AbstractSea anemones are known to contain a wide diversity of biologically active peptides, mostly u...
A peptide toxin, ShK, that blocks voltage-dependent potassium channels was isolated from the whole b...
From a systematic screening of animal venoms, we isolated a new toxin (APETx2) from the sea anemone ...
Sea anemone venoms have long been recognized as a rich source of peptides with interesting pharmacol...
In contrast to the many studies on the venoms of scorpions, spiders, snakes and cone snails, tip to ...
Sea anemone venoms have become a rich source of peptide toxins which are invaluable tools for studyi...
Voltage-gated potassium (KV) channels regulate diverse physiological processes and are an important ...