Sheep anti Human chx 10 (Visual system homeobox 2) (NT)
X1180P
ApplicationsWestern Blot, ImmunoHistoChemistry, ImmunoHistoChemistry Frozen
Product group Antibodies
ReactivityChicken, Human, Mouse, Rat
TargetVSX2
Overview
- SupplierNordic-MUbio
- Product NameSheep anti Human chx 10 (Visual system homeobox 2) (NT)
- Delivery Days Customer7
- Antibody SpecificityHuman Chx10 protein
- Application Supplier NoteDetects Chx10 by Western blot at 0.5 to 1 microg/ml. Detects a 46 kDa band in mouse and rat retinal tissue lysates. Optimal concentration should be evaluated by serial dilutions. Suitable for use against recombinant proteins conjugated to OVA, GST, His tags and other.
- ApplicationsWestern Blot, ImmunoHistoChemistry, ImmunoHistoChemistry Frozen
- Applications SupplierWestern Blotting;Immunohistochemistry (frozen);Immunohistochemistry (frozen)
- Category SupplierPrimary antibodies
- CertificationResearch Use Only
- ClonalityPolyclonal
- ConjugateUnconjugated
- Gene ID338917
- Target nameVSX2
- Target descriptionvisual system homeobox 2
- Target synonymsceh-10 homeo domain containing homolog; ceh-10 homeodomain-containing homolog; CHX10; homeobox protein CHX10; HOX10; MCOP2; MCOPCB3; RET1; visual system homeobox 2
- HostSheep
- IsotypeIgG
- Protein IDP58304
- Protein NameVisual system homeobox 2
- Scientific DescriptionCeh-10 homeodomain-containing homolog
- Shelf life instructionSee expiration date on vial
- SourceAntibody raised in sheep against a recombinant protein corresponding to amino acids 1 to 131 derived from the N-terminal region of the human Chx10 protein conjugated to KLH.
- ReactivityChicken, Human, Mouse, Rat
- Reactivity SupplierHuman;Mouse;Rat;Chicken
- UNSPSC12352203
References
- 1. Liu, I.S., et al. Developmental expression of a novel murine homeobox gene (Chx10): evidence for roles in determination of the neuroretina and inner nuclear layer. Neuron 1994, 13, 377-393 2. Chen, C.M. & Cepko, C.L. Expression of Chx10 and Chx10-1 in the developing chicken retina. Mech. Dev. 2000, 90, 293-297 3. Ferda Percin, E., et al. Human microphthalmia associated with mutations in the retinal homeobox gene CHX10. Nat. Genet. 2000, 25, 397-401 4. Nittner, D., et al. Synthetic lethality between Rb, p53 and Dicer or miR-17–92 in retinal progenitors suppresses retinoblastoma formation. Nature Cell Biology (2012), 14, 958-965 5. Kay, J.N., et al. Neurod6 expression defines new retinal amacrine cell subtypes and regulates their fate. Nature Neuroscience (2011), 14, 965-972 6. Eiraku, M., et al. Self-organizing optic-cup morphogenesis in three-dimensional culture. Nature (2011), 472, 51-56 7. Pierfelice, T.J., et al. Notch3 Activation Promotes Invasive Glioma Formation in a Tissue Site-Specific Manner. Cancer Res., 71, 1115-1125 (2011). 7. Takae Kiyama, Ching-Kang Chen, Steven W Wang, Ping Pan, Zhenlin Ju, Jing Wang, Shinako Takada, William H Klein, Chai-An Mao Essential roles of mitochondrial biogenesis regulator Nrf1 in retinal development and homeostasis https://doi.org/10.1186/s13024-018-0287-z 8. Anastasia Marie Litke; Sarah Samuelson; Kerry R. Delaney; Yves Sauvé; Robert L. Chow Investigating the Pathogenicity of VSX1 Missense Mutations and Their Association With Corneal Disease Investigative Ophthalmology & Visual Science December 2018, Vol.59, 5824-5835. doi:10.1167/iovs.18-2549