GAT3 Products
Gamma-aminobutyric acid (GABA) is the primary inhibitory neurotransmitter in the central nervous system, causing a hyperpolarization of the membrane through the opening of a Cl negative channel associated with the GABAA receptor (GABAA-R) subtype. GABA plasma membrane transporters (GATs) influence synaptic neurotransmission by high-affinity uptake and release of GABA. To date, four distinct GABA transporters have been identified: GAT-1, GAT-2, GAT-3, and BGT-1. GAT-3 has been found to be localized to astrocytes within the cerebral cortex indicating that this transporter mediates GABA uptake into glial cells (Minelli et al., 1996).
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36 results for "GAT3" in Products
36 results for "GAT3" in Products
GAT3 Products
Gamma-aminobutyric acid (GABA) is the primary inhibitory neurotransmitter in the central nervous system, causing a hyperpolarization of the membrane through the opening of a Cl negative channel associated with the GABAA receptor (GABAA-R) subtype. GABA plasma membrane transporters (GATs) influence synaptic neurotransmission by high-affinity uptake and release of GABA. To date, four distinct GABA transporters have been identified: GAT-1, GAT-2, GAT-3, and BGT-1. GAT-3 has been found to be localized to astrocytes within the cerebral cortex indicating that this transporter mediates GABA uptake into glial cells (Minelli et al., 1996).
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Applications: IHC, WB
Reactivity:
Human
| Reactivity: | Human |
| Details: | Rabbit IgG Polyclonal |
| Applications: | IHC, WB |
| Applications: | WB |
| Applications: | WB, ELISA, MA, AP |
Applications: WB, ELISA
Reactivity:
Human
| Reactivity: | Human |
| Details: | Mouse IgG2a Kappa Monoclonal Clone #2C3 |
| Applications: | WB, ELISA |
| Reactivity: | Human |
| Details: | Rabbit IgG Polyclonal |
| Applications: | IHC |
| Applications: | AC |
| Reactivity: | Human |
| Details: | Rabbit IgG Polyclonal |
| Applications: | IHC |
| Reactivity: | Human |
| Details: | Rabbit IgG Polyclonal |
| Applications: | IHC |
| Reactivity: | Human |
| Details: | Rabbit IgG Polyclonal |
| Applications: | IHC |
| Reactivity: | Human |
| Details: | Rabbit IgG Polyclonal |
| Applications: | IHC |
| Reactivity: | Human |
| Details: | Rabbit IgG Polyclonal |
| Applications: | IHC |
| Reactivity: | Human |
| Details: | Rabbit IgG Polyclonal |
| Applications: | IHC |
| Reactivity: | Human |
| Details: | Rabbit IgG Polyclonal |
| Applications: | IHC |
| Reactivity: | Human |
| Details: | Rabbit IgG Polyclonal |
| Applications: | IHC |
| Reactivity: | Human |
| Details: | Rabbit IgG Polyclonal |
| Applications: | IHC |
| Reactivity: | Human |
| Details: | Rabbit IgG Polyclonal |
| Applications: | IHC |
| Reactivity: | Human |
| Details: | Rabbit IgG Polyclonal |
| Applications: | IHC |
| Reactivity: | Human |
| Details: | Rabbit IgG Polyclonal |
| Applications: | IHC |
| Reactivity: | Human |
| Details: | Rabbit IgG Polyclonal |
| Applications: | IHC |
| Reactivity: | Human |
| Details: | Rabbit IgG Polyclonal |
| Applications: | IHC |
| Reactivity: | Human |
| Details: | Rabbit IgG Polyclonal |
| Applications: | IHC |
| Reactivity: | Human |
| Details: | Rabbit IgG Polyclonal |
| Applications: | IHC |
| Reactivity: | Human |
| Details: | Rabbit IgG Polyclonal |
| Applications: | IHC |
| Reactivity: | Human |
| Details: | Rabbit IgG Polyclonal |
| Applications: | IHC |
| Reactivity: | Human |
| Details: | Rabbit IgG Polyclonal |
| Applications: | IHC |