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Short Toxin-like Proteins Abound in Cnidaria Genomes
Yitshak Tirosh
, Itai Linial
, Manor Askenazi
,
Michal Linial
*
*
Corresponding author for this work
Department of Biological Chemistry
Research output
:
Contribution to journal
›
Article
›
peer-review
5
Scopus citations
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Keyphrases
Toxin-like Proteins
100%
Cnidaria
100%
ClanTox
40%
Channel Blocker
20%
Cysteine
20%
Protease Inhibitors
20%
Marine Species
20%
Nematostella Vectensis
20%
Sea Anemone
20%
Prediction Method
20%
Short Proteins
20%
Small Families
20%
Manual Annotation
20%
Anthozoa
20%
Complete Proteome
20%
Machine Learning Predictors
20%
Channel Inhibitor
20%
Metal-binding Proteins
20%
Statistical Machine Learning
20%
Confidence Degree
20%
Hydrozoa
20%
Membrane Pore Formation
20%
Aquatic Ecosystems
20%
Hydra Magnipapillata
20%
Venomous Animals
20%
Evolutionary Expansion
20%
Biochemistry, Genetics and Molecular Biology
Cnidaria
100%
Sea Anemone
40%
Proteome
20%
Paralogy
20%
Binding Protein
20%
Phylum
20%
Nematostella Vectensis
20%
Protease Inhibitor
20%
Metal Binding
20%
Derived Protein
20%
Anthozoa
20%
Poisonous Animal
20%
Channel Gating
20%
Marine Species
20%
Ion Channel Blockers
20%
Membrane Pore
20%
Hydrozoa
20%
Cysteine
20%
Ion Channel
20%
Pharmacology, Toxicology and Pharmaceutical Science
Cnidaria
100%
Ion Channel
40%
Sea Anemone
40%
Channel Blocker
20%
Proteinase Inhibitor
20%
Poisonous Animal
20%
Cysteine
20%
Nematostella Vectensis
20%
Binding Protein
20%
Anthozoa
20%
Marine Species
20%
Hydrozoa
20%
Proteome
20%