Cusabio Polyclonal Antibodies
CHRNA10 Antibody | CSB-PA289370
- SKU:
- CSB-PA289370
- Availability:
- 3 to 7 Working Days
- Size:
- 100ul
Description
CHRNA10 Antibody | CSB-PA289370 | Cusabio
CHRNA10 Antibody is Available at Gentaur Genprice with the fastest delivery.
Online Order Payment is possible or send quotation to info@gentaur.com.
Product Type: Polyclonal Antibody
Target Names: CHRNA10
Aliases: ach10; cholinergic receptor; nicotinic; alpha 10; chrna10
Background: Ionotropic receptor with a probable role in the modulation of auditory stimuli. Agonist binding may induce an extensive change in conformation that affects all subunits and leads to opening of an ion-conducting channel across the plasma membrane. The channel is permeable to a range of divalent cations including calcium, the influx of which may activate a potassium current which hyperpolarizes the cell membrane. In the ear, this may lead to a reduction in basilar membrane motion, altering the activity of auditory nerve fibers and reducing the range of dynamic hearing. This may protect against acoustic trauma.
Sgard F., Mol. Pharmacol. 61:150-159 (2002) .
Lustig L.R., Genomics 73:272-283 (2001) .
Vandenberk I., Submitted (NOV-2000) to the EMBL/GenBank/DDBJ databases.
Isotype: IgG
Conjugate: Non-conjugated
Clonality: Polyclonal
Uniport ID: Q9GZZ6
Host Species: Rabbit
Species Reactivity: Human, Mouse
Immunogen: Synthesized peptide derived from C-terminal of human CHRNA10.
Immunogen Species: Human
Applications: ELISA, WB
Tested Applications: ELISA, WB;WB:1:500-1:3000
Purification Method: The antibody was affinity-purified from rabbit antiserum by affinity-chromatography using epitope-specific immunogen.
Dilution Ratio1: ELISA:1:2000-1:10000
Dilution Ratio2: WB:1:500-1:3000
Dilution Ratio3:
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Buffer: Rabbit IgG in phosphate buffered saline (without Mg2+ and Ca2+), pH 7.4, 150mM NaCl, 0.02% sodium azide and 50% glycerol.
Form: liquid
Storage: Upon receipt, store at -20°C or -80°C. Avoid repeated freeze.
Initial Research Areas: Neuroscience
Research Areas: Neuroscience;Signal transduction