Antibodies that detect KV3.1b (KCNC1) can be used in several scientific applications, including ELISA, Immunocytochemistry, Immunohistochemistry, Western Blot and Immunoprecipitation. These antibodies target KV3.1b (KCNC1) in Human, Mouse, Rat, Hamster and Non-human primate samples....Antibodies that detect KV3.1b (KCNC1) can be used in several scientific applications, including ELISA, Immunocytochemistry, Immunohistochemistry, Western Blot and Immunoprecipitation. These antibodies target KV3.1b (KCNC1) in Human, Mouse, Rat, Hamster and Non-human primate samples. Our KV3.1b (KCNC1) monoclonal and...Antibodies that detect KV3.1b (KCNC1) can be used in several scientific applications, including ELISA, Immunocytochemistry, Immunohistochemistry, Western Blot and Immunoprecipitation. These antibodies target KV3.1b (KCNC1) in Human, Mouse, Rat, Hamster and Non-human primate samples. Our KV3.1b (KCNC1) monoclonal and polyclonal antibodies are developed in Mouse and Rabbit. Find the KV3.1b (KCNC1) antibody that fits your needs. Choose from 1 of 7 KV3.1b (KCNC1) antibodies, which have been validated in experiments with 5 images featured in our data gallery.
Browse primary antibodies for WB, Flow, IHC, ICC/IF, ELISA, IP, and other applications. Antibodies with Advanced Verification data have been validated for specificity to ensure...
Antibodies that detect KV3.1b (KCNC1) can be used in several scientific applications, including ELISA, Immunocytochemistry, Immunohistochemistry, Western Blot and Immunoprecipitation. These antibodies target KV3.1b (KCNC1) in Human, Mouse, Rat, Hamster and Non-human primate samples. Our KV3.1b (KCNC1) monoclonal and polyclonal antibodies are developed in Mouse and Rabbit. Find the KV3.1b (KCNC1) antibody that fits your needs. Choose from 1 of 7 KV3.1b (KCNC1) antibodies, which have been validated in experiments with 5 images featured in our data gallery.
Browse primary antibodies for WB, Flow, IHC, ICC/IF, ELISA, IP, and other applications. Antibodies with Advanced Verification data have been validated for specificity to ensure that the antibody binds to the antigen stated. If you cannot find the antibody you’re looking for, contact us today to develop custom antibodies for specific targets, species and applications.
靶标信息
Voltage-gated K+ channels are important determinants of neuronal membrane excitability. Moreover, differences in K+ channel expression patterns and densities contribute to the variations in action potential waveforms and repetitive firing patterns evident in different neuronal cell types (Maletic-Savatic et al., 1995; Pongs, 1999; Blaine and Ribera, 1998; Burger and Ribera, 1996). The Kv3.1 potassium channel is expressed at high levels in neurons that characteristically fire rapid trains of action potentials (Gan et al., 1999). Particularly high levels of this channel are found in neurons of the auditory brainstem. These neurons appear to participate in neural circuits that determine the intensity and timing of auditory stimuli and use this information to determine the location of sounds in space (von Hehn et al., 2004).
同义词
C230009H10Rik; EPM7; KCNC1; Kcr2-1; KShIIIB; KV3.1; Kv4; NGK2; NGK2-KV4; Potassium channel gene 1 (alternative splicing product described in Luneau et al 1991); potassium channel, voltage gated Shaw related subfamily C, member 1; potassium channel, voltage gated Shaw-related subfamily C, member 1; potassium voltage gated channel, Shaw-related subfamily, member 1; potassium voltage-gated channel subfamily C member 1; RAW2; Shaw; voltage-gated potassium channel protein KV3.1; voltage-gated potassium channel subunit Kv3.1; Voltage-gated potassium channel subunit Kv4
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