Kir3.4 Products
G-protein regulated inward-rectifier potassium channels (GIRK) are part of a superfamily of inward-rectifier K+ channels. To date four GIRK subunits, designated GIRK1-4 (also designated Kir3.1-4), have been identified in mammals, and GIRK5 has been found in Xenopus oocytes. GIRK channels exist in vivo both as homotetramers and heterotetramers. GIRK channels are modulated by G-proteins; they are also modulated by phosphatidylinositol 4,5-bisphosphate, intracellular sodium, ethanol and mechanical stretch. GIRK1, 2 and 3 are highly abundant in brain. In general, neuronal GIRK channels are involved in the regulation of the excitability of neurons and may contribute to the resting potential.
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8 results for "Kir3.4" in Products
8 results for "Kir3.4" in Products
Kir3.4 Products
G-protein regulated inward-rectifier potassium channels (GIRK) are part of a superfamily of inward-rectifier K+ channels. To date four GIRK subunits, designated GIRK1-4 (also designated Kir3.1-4), have been identified in mammals, and GIRK5 has been found in Xenopus oocytes. GIRK channels exist in vivo both as homotetramers and heterotetramers. GIRK channels are modulated by G-proteins; they are also modulated by phosphatidylinositol 4,5-bisphosphate, intracellular sodium, ethanol and mechanical stretch. GIRK1, 2 and 3 are highly abundant in brain. In general, neuronal GIRK channels are involved in the regulation of the excitability of neurons and may contribute to the resting potential.
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Applications: IHC, WB
Reactivity:
Human
Reactivity: | Human |
Details: | Rabbit IgG Polyclonal |
Applications: | IHC, WB |
Applications: WB, ELISA
Reactivity:
Human
Reactivity: | Human |
Details: | Mouse IgG2a Kappa Monoclonal Clone #8D2 |
Applications: | WB, ELISA |
Reactivity: | Human, Mouse, Rat |
Details: | Rabbit IgG Polyclonal |
Applications: | WB |
Applications: | WB, ELISA, MA, AP, PAGE |
Reactivity: | Human |
Details: | Rabbit IgG Polyclonal |
Applications: | IHC |
Applications: | WB |
Applications: | AC |
Applications: | AC |