Anti-WAVE1/SCAR Antibody (K91/36)

Our Anti-WAVE1/SCAR mouse monoclonal primary antibody from NeuroMab is produced in-house from hybridoma clone K91/36. It is KO validated, detects human, mouse, and rat WAVE1/SCAR, and is purified by Protein A chromatography. It is great for use in IHC, ICC, IP, WB.

SKU: 75-048

Volume: 100 µL
1-2 business days
Sale price$319.00

Product Specific References for Applications and Species

Immunocytochemistry: Mouse
PMID Dilution Publication
26843638not listedHsiao, K., et al. 2016. Cyfip1 Regulates Presynaptic Activity during Development.. Journal of Neuroscience, 1564-1576.
24153177not listedHan, K., et al. 2013. SHANK3 overexpression causes manic-like behaviour with unique pharmacogenetic properties.. Nature, 72-77.
Immunocytochemistry: Rat
PMID Dilution Publication
25293574not listedChazeau, A., et al. 2014. Nanoscale segregation of actin nucleation and elongation factors determines dendritic spine protrusion.. The EMBO Journal, 2745-2764.
Western Blot: Human
PMID Dilution Publication
196687091:1000Khodosevich, K., et al. 2009. Major signaling pathways in migrating neuroblasts.. Frontiers in Molecular Neuroscience, 7.
Western Blot: Mouse
PMID Dilution Publication
36251395not listedKang, M., et al. 2022. CYFIP2 p.Arg87Cys Causes Neurological Defects and Degradation of CYFIP2. Annals of Neurology, .
33613257not listedSahasrabudhe, A., et al. 2021. Cyfip1 Regulates SynGAP1 at Hippocampal Synapses. Frontier in Synaptic Neuroscience, 581714.
331922971:1000Zhang, Y., et al. 2020. Enhanced prefrontal neuronal activity and social dominance behavior in postnatal forebrain excitatory neuron-specific Cyfip2 knock-out mice. . Frontiers in molecular neuroscience, p.201., 574947.
32562430not listedLee, S.H., et al. 2020. Haploinsufficiency of Cyfip2 Causes Lithium-Responsive Prefrontal Dysfunction. Annals of Neurology, 526-543.
303520641:1000-1:2000Chen, Y., et al. 2018. Restoring striatal WAVE-1 improves maze exploration performance of GluN1 knockdown mice. PLoS One, .
28701918not listedLee, Y., et al. 2017. Striatal transcriptome and interactome analysis of Shank3-overexpressing mice reveals the connectivity between Shank3 and mTORC1 signaling.. Frontiers in Molecular Neuroscience, 10, p.201., 201.
28469556not listedLee, Y., et al. 2017. Integrative Analysis of Brain Region-specific Shank3 Interactomes for Understanding the Heterogeneity of Neuronal Pathophysiology Related to SHANK3 Mutations. Frontiers in Molecular Neuroscience, 110.
24439377not listedChia, P.H., et al. 2014. Local F-actin network links synapse formation and axon branching.. Cell, 208-220.
24439376not listedChen, B., et al. 2014. The WAVE regulatory complex links diverse receptors to the actin cytoskeleton. Cell, 195-207.
17301160not listedCheng, A., et al. 2007. Pancortin-2 interacts with WAVE1 and Bcl-xL in a mitochondria-associated protein complex that mediates ischemic neuronal death.. Journal of Neuroscience, 1519-1528.

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