GTX79177
KCNQ5 antibody

Cannot supply to this region.
- SKU:
- GTX79177
- Additional Names:
- potassium voltage-gated channel subfamily Q member 5 , Kcnq5l
- Application:
- IHC, WB
- Concentration:
- 1 mg/ml
- Physical State:
- Liquid
- Species Reactivity:
- Human
- Purification:
- Affinity Purified
- Storage Conditions:
- -20[o]C Aliquot. Avoid freeze/thaw cycles. Store undiluted., 2-8[o]C Aliquot. Avoid freeze/thaw cycles. Store undiluted., -20[o]C/-70[o]C Aliquot. Avoid freeze/thaw cycles. Store undiluted.
- Supplier:
- Genetex
- Host:
- Rabbit
- Reactivities:
- Human, Rat
- Buffer:
- PBS, 0.1% BSA, 0.05% Sodium azide.
- Immunogen:
- Synthetic peptide corresponding to residues C(880) K A G E S T D A L S L P H V K L K(897) of human KCNQ5 protein.
- Synonyms:
- Kcnq5l;potassium channel, voltage-gated KQT-like subfamily Q, member 5;potassium voltage-gated channel subfamily KQT member 5;potassium voltage-gated channel, KQT-like subfamily, member 5
- Extra Details:
- KCNQs are members of the voltage-dependent non-inactivating potassium channel family. Currently there are five known KNCQs (KCNQ1-5) found in the central nervous system. Studies have shown that KCNQ3 and KCNQ5 form heteromultimers that, when formed, substantially increase the M-current. Inhibition of M-current controls neuron excitability throughout the nervous system as well as the responsiveness to synaptic inputs. Genetic mutations in these proteins have been linked to disorders such as benign familial neonatal convulsions (BFNC), deafness, neuropathic pain and epilepsy. Voltage-dependent potassium channels are key regulators of the resting membrane potential and modulate the excitability of electrically active cells. The channels are usually tetrameric and can interact with auxiliary subunits that enhance or modify currents mediated by the pore-forming subunits.
- Shipping Conditions:
- Blue Ice
