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The Shaker gene family of Drosophila encodes components of voltage-gated potassium channels and is comprised of four subfamilies. Additionally we are shipping Potassium Voltage-Gated Channel, Shaw-Related Subfamily, Member 4 Proteins (6) and many more products for this protein.
Showing 10 out of 88 products:
Human Polyclonal KCNC4 Primary Antibody for EIA, WB - ABIN952998
Mosing, Verweij, Medland, Painter, Gordon, Heath, Madden, Montgomery, Martin: A genome-wide association study of self-rated health. in Twin research and human genetics : the official journal of the International Society for Twin Studies 2010
Show all 5 references for ABIN952998
Cow (Bovine) Polyclonal KCNC4 Primary Antibody for IHC, WB - ABIN2776170
Gregory, Barlow, McLay, Kaul, Swarbreck, Dunham, Scott, Howe, Woodfine, Spencer, Jones, Gillson, Searle, Zhou, Kokocinski, McDonald, Evans, Phillips, Atkinson, Cooper, Jones, Hall, Andrews, Lloyd et al.: The DNA sequence and biological annotation of human chromosome 1. ... in Nature 2006
Human Monoclonal KCNC4 Primary Antibody for ICC, IF - ABIN863128
Angulo, Noé, Casadó, Mallol, Gomez-Isla, Lluis, Ferrer, Ciudad, Franco: Up-regulation of the Kv3.4 potassium channel subunit in early stages of Alzheimer's disease. in Journal of neurochemistry 2004
Although all Kv3 (show KCNA3 Antibodies) transcripts are significantly expressed in embryonic age in whole brain extracts, only Kv3.1, Kv3.2 and Kv (show KCNC1 Antibodies)3.4 sub (show KCNC2 Antibodies)unit proteins were present, suggesting a novel role for Kv3 channels at this developmental stage.
These results suggest a novel peripheral mechanism of post-spinal cord injury pain sensitization implicating Kv3.4 channel dysregulation and potential Kv3.4-based therapeutic interventions.
Ionizing radiation-induced G2/M arrest was preceded by activation of Kv3.4-like voltage-gated potassium channels.
these data suggest that Kv3.4 and Cav1.2 (show CACNA1C Antibodies) may act together to control Ca(2 (show CA2 Antibodies)) -dependent electrical activity of pioneer axons and play important roles during axon pathfinding.
Although all KV3 (show KCNA3 Antibodies) subunit transcripts are significantly expressed at embryonic age in whole mouse brain extracts, only KV3.1 (show KCNC1 Antibodies), KV3.2 (show KCNC2 Antibodies) and KV3.4 subunit transgenic proteins are present.
Kv3.4 channels exert a permissive role in the cell cycle progression of proliferating uterine vascular smooth cells.
Kv3.4 was overexpressed in early stages of Alzheimer disease and in advanced stages was present at high levels in neurodegenerative structures. This subunit regulates delayed-rectifier currents, primary determinants of spike repolarization in neurones
The characterization of a missense mutation in MiRP2 (show Kcne3 Antibodies) that affects its phosphorylation and consequent interactions with Kv3.4 is reported.
The Shaker gene family of Drosophila encodes components of voltage-gated potassium channels and is comprised of four subfamilies. Based on sequence similarity, this gene is similar to the Shaw subfamily. The protein encoded by this gene belongs to the delayed rectifier class of channel proteins and is an integral membrane protein that mediates the voltage-dependent potassium ion permeability of excitable membranes. It generates atypical voltage-dependent transient current that may be important for neuronal excitability. Multiple transcript variants have been found for this gene.
potassium voltage-gated channel, Shaw-related subfamily, member 4
, voltage-gated potassium channel Kv3.4
, potassium voltage-gated channel subfamily C member 4-like
, Shaw-related voltage-gated potassium channel protein 4
, potassium voltage-gated channel subfamily C member 4
, potassium voltage-gated channel subfamily C member 4 (Voltage-gated potassium channel subunit Kv3.4) (Raw3)
, voltage-gated potassium channel subunit Kv3.4
, K+ channel subunit
, voltage-gated potassium channel subunit KV3.4
, potassium channel alpha subunit Kv3.4