Title : Silencing neurotransmission with membrane-tethered toxins - Auer_2010_Nat.Methods_7_229 |
Author(s) : Auer S , Sturzebecher AS , Juttner R , Santos-Torres J , Hanack C , Frahm S , Liehl B , Ibanez-Tallon I |
Ref : Nat Methods , 7 :229 , 2010 |
Abstract :
At synaptic terminals, high voltage-activated Ca(v)2.1 and Ca(v)2.2 calcium channels have an essential and joint role in coupling the presynaptic action potential to neurotransmitter release. Here we show that membrane-tethered toxins allowed cell-autonomous blockade of each channel individually or simultaneously in mouse neurons in vivo. We report optimized constitutive, inducible and Cre recombinase-dependent lentiviral vectors encoding fluorescent recombinant toxins, and we also validated the toxin-based strategy in a transgenic mouse model. Toxins delivered by lentiviral vectors selectively inhibited the dopaminergic nigrostriatal pathway, and transgenic mice with targeted expression in nociceptive peripheral neurons displayed long-lasting suppression of chronic pain. Optimized tethered toxins are tools for cell-specific and temporal manipulation of ion channel-mediated activities in vivo, including blockade of neurotransmitter release. |
PubMedSearch : Auer_2010_Nat.Methods_7_229 |
PubMedID: 20139968 |
Auer S, Sturzebecher AS, Juttner R, Santos-Torres J, Hanack C, Frahm S, Liehl B, Ibanez-Tallon I (2010)
Silencing neurotransmission with membrane-tethered toxins
Nat Methods
7 :229
Auer S, Sturzebecher AS, Juttner R, Santos-Torres J, Hanack C, Frahm S, Liehl B, Ibanez-Tallon I (2010)
Nat Methods
7 :229