Pasteurella multocida toxin as a tool for studying Gq signal transduction.
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Regulation of epithelial sodium channel trafficking by proprotein convertase subtilisin/kexin type 9 (PCSK9)Gq-Coupled Receptors in AutoimmunityStructural basis for the specific inhibition of heterotrimeric Gq protein by a small moleculeNedd4-2 induces endocytosis and degradation of proteolytically cleaved epithelial Na+ channelsProtease activated receptor signaling is required for African trypanosome traversal of human brain microvascular endothelial cellsIntersubunit conformational changes mediate epithelial sodium channel gating.Identification of epithelial Na+ channel (ENaC) intersubunit Cl- inhibitory residues suggests a trimeric alpha gamma beta channel architecture.Cargo-delivery platforms for targeted delivery of inhibitor cargos against botulism.Acetylation stimulates the epithelial sodium channel by reducing its ubiquitination and degradationIdentification of extracellular domain residues required for epithelial Na+ channel activation by acidic pHThe C3 domain of Pasteurella multocida toxin is the minimal domain responsible for activation of Gq-dependent calcium and mitogenic signaling.Ubiquitin-specific peptidase 8 (USP8) regulates endosomal trafficking of the epithelial Na+ channelExtracellular protons regulate human ENaC by modulating Na+ self-inhibitionExtracellular chloride regulates the epithelial sodium channel.Recent insights into Pasteurella multocida toxin and other G-protein-modulating bacterial toxins.Probing heterotrimeric G protein activation: applications to biased ligands.Arf6-dependent intracellular trafficking of Pasteurella multocida toxin and pH-dependent translocation from late endosomes.Membrane interaction of Pasteurella multocida toxin involves sphingomyelin.Intracellular sodium regulates proteolytic activation of the epithelial sodium channel.Activation of Galpha (i) and subsequent uncoupling of receptor-Galpha(i) signaling by Pasteurella multocida toxin.Calcineurin-independent inhibition of 3T3-L1 adipogenesis by Pasteurella multocida toxin: suppression of Notch1, stabilization of beta-catenin and pre-adipocyte factor 1.Application of intact cell-based NFAT-beta-lactamase reporter assay for Pasteurella multocida toxin-mediated activation of calcium signaling pathway.ENaC proteolytic regulation by channel-activating protease 2.Pasteurella multocida toxin-induced activation of RhoA is mediated via two families of G{alpha} proteins, G{alpha}q and G{alpha}12/13.
P2860
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P2860
Pasteurella multocida toxin as a tool for studying Gq signal transduction.
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2004 nî lūn-bûn
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2004年の論文
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2004年論文
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name
Pasteurella multocida toxin as a tool for studying Gq signal transduction.
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Pasteurella multocida toxin as a tool for studying Gq signal transduction.
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type
label
Pasteurella multocida toxin as a tool for studying Gq signal transduction.
@ast
Pasteurella multocida toxin as a tool for studying Gq signal transduction.
@en
prefLabel
Pasteurella multocida toxin as a tool for studying Gq signal transduction.
@ast
Pasteurella multocida toxin as a tool for studying Gq signal transduction.
@en
P2860
P1476
Pasteurella multocida toxin as a tool for studying Gq signal transduction.
@en
P2860
P2888
P304
P356
10.1007/S10254-004-0032-6
P577
2004-09-29T00:00:00Z