Anti-KChIP1 K+ Channel Antibody (K55/7)


Primary Antibody
Human, Mouse, Rat
K55/7
IHC, IP
Mouse
Purified
Kcnip1 Kchip1
30 kDa

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Anti-KChIP1 K+ Channel Antibody
SKU: 75-003

Volume: 100 µL
Price:
Sale price$345


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Product Specific References for Applications and Species

Immunocytochemistry: Non-Human Primate
PMID Dilution Publication
19350670not listedMikula, S., et al. 2010. Complete 3D visualization of primate striosomes by KChIP1 immunostaining.. Journal of Comparative Neurology, 507-17.
Immunocytochemistry: Rat
PMID Dilution Publication
262392001:300-1:1500Cheng, C.F., et al. 2016. Coexpression of auxiliary subunits KChIP and DPPL in potassium channel Kv4-positive nociceptors and pain-modulating spinal interneurons.. Journal of Comparative Neurology, 846-73.
226123221:500Pruunsild, P. , et al. 2012. Subcellular localization and transcription regulatory potency of KCNIP/Calsenilin/DREAM/KChIP proteins in cultured primary cortical neurons do not provide support for their role in CRE-dependent gene expression.. Journal of Neurochemistry, 29-43.
201546821:250Anderson, D., et al. 2010. Regulation of neuronal activity by Cav3-Kv4 channel signaling complexes.. Nature Neuroscience, 333-7.
Immunohistochemistry: Mouse
PMID Dilution Publication
255454611:500Puighermanal, E., et al. 2015. drd2-cre:ribotag mouse line unravels the possible diversity of dopamine d2 receptor-expressing cells of the dorsal mouse hippocampus.. Hippocampus, 858-75.
22675541not listedManning, C.F., et al. 2012. Benefits and pitfalls of secondary antibodies: why choosing the right secondary is of primary importance.. PLoS One, e38313.
17122038not listedMenegola, M. , et al. 2006. Unanticipated region- and cell-specific downregulation of individual KChIP auxiliary subunit isotypes in Kv4.2 knock-out mouse brain.. Journal of Neuroscience, 2137-42.
Immunohistochemistry: Non-Human Primate
PMID Dilution Publication
347275231:200He, J., et al. 2021. Transcriptional and anatomical diversity of medium spiny neurons in the primate striatum.. Current biology , 5473-5486.e6.
31429499not listedAmemori, S., et al. 2020. Microstimulation of primate neocortex targeting striosomes induces negative decision‐making. . European Journal of Neuroscience, 731-741.
305549031:200Hong, S., et al. 2019. Predominant striatal input to the lateral habenula in macaques comes from striosomes. . Current Biology, 51-61.
297375781:400Amita, H., et al. 2019. Neuronal connections of direct and indirect pathways for stable value memory in caudal basal ganglia.. European Journal of Neuroscience, 712-725.
Immunohistochemistry: Rat
PMID Dilution Publication
324908111:500Oláh, V.J., et al. 2020. Functional specification of CCK+ interneurons by alternative isoforms of Kv4. 3 auxiliary subunits. . Elife, e58515.
283308771:100Kuo, Y.L., et al. 2017. K + Channel Modulatory Subunits KChIP and DPP Participate in Kv4-Mediated Mechanical Pain Control.. Journal of Neuroscience, 4391-4404.
262392001:150-1:300Cheng, C.F., et al. 2016. Coexpression of auxiliary subunits KChIP and DPPL in potassium channel Kv4-positive nociceptors and pain-modulating spinal interneurons.. Journal of Comparative Neurology, 846-73.
253556921:50 (supe)Wang, W.C., et al. 2015. Immunohistochemical localization of DPP10 in rat brain supports the existence of a Kv4/KChIP/DPPL ternary complex in neurons.. Journal of Comparative Neurology, 608-628.
24037673not listedRainnie, D.G., et al. 2014. Distribution and functional expression of Kv4 family α subunits and associated KChIP β subunits in the bed nucleus of the stria terminalis.. Journal of Comparative Neurology, 609-25.
23169482not listedWhite, N.S., et al. 2013. Probing tissue microstructure with restriction spectrum imaging: Histological and theoretical validation.. Human Brain Mapping, 327-46.
211294481:100Bourdeau, M.L., et al. 2011. KChIP1 modulation of Kv4.3-mediated A-type K(+) currents and repetitive firing in hippocampal interneurons.. Neuroscience, 173-87.
208499291:1000Day-Brown, J.D., et al. 2010. Expression and distribution of Kv4 potassium channel subunits and potassium channel interacting proteins in subpopulations of interneurons in the basolateral amygdala.. Neuroscience, 721-33.
18727953not listedMonaghan, M.M., et al. 2008. Altered expression and localization of hippocampal A-type potassium channel subunits in the pilocarpine-induced model of temporal lobe epilepsy.. Neuroscience, 550-62.
18495361not listedMenegola, M., et al. 2008. Dendritic A-type potassium channel subunit expression in CA1 hippocampal interneurons.. Neuroscience, 953-64.
165250471:100Kollo, M., et al. 2006. Novel subcellular distribution pattern of A-type K+ channels on neuronal surface.. Journal of Neuroscience, 2684-91.
Immunohistochemistry: Tree Shrew
PMID Dilution Publication
211201391:5 (supe)Day-Brown, J.D., et al. 2010. Pulvinar projections to the striatum and amygdala in the tree shrew.. Frontiers in Neuroanatomy, 143.
Western Blot: Mouse
PMID Dilution Publication
32562430not listedLee, S.H., et al. 2020. Haploinsufficiency of Cyfip2 Causes Lithium-Responsive Prefrontal Dysfunction.. Annals of Neurology, 526-543.
219436061:1000Sun, W., et al. 2011. DPP6 establishes the A-type K(+) current gradient critical for the regulation of dendritic excitability in CA1 hippocampal neurons.. Neuron, 1102-15.
200454631:1000Lin, L., et al. 2010. KChIP4a regulates Kv4.2 channel trafficking through PKA phosphorylation.. Molecular and Cellular Neuroscience, 315-25.
192236001:1000Alexander, J.C., et al. 2009. The role of calsenilin/DREAM/KChIP3 in contextual fear conditioning.. Learning & Memory, 167-77.
Western Blot: Rat
PMID Dilution Publication
211294481:10Bourdeau, M.L., et al. 2011. KChIP1 modulation of Kv4.3-mediated A-type K(+) currents and repetitive firing in hippocampal interneurons.. Neuroscience, 173-87.
208499291:1000Day-Brown, J.D., et al. 2010. Expression and distribution of Kv4 potassium channel subunits and potassium channel interacting proteins in subpopulations of interneurons in the basolateral amygdala.. Neuroscience, 721-33.
Additional Publications: Unspecified
PMID Publication
23637173Anderson, D., et al. 2013. The Cav3-Kv4 complex acts as a calcium sensor to maintain inhibitory charge transfer during extracellular calcium fluctuations.. Journal of Neuroscience, 7811-24.

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