p75 NGF Receptor / CD271 antibody [NGFR5] (PerCP-Cy5.5)

Cat# GTX00556-11-100test

Size : 100test

Brand : GeneTex

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Host

Mouse

Clonality

Monoclonal

Clone Name

NGFR5

Isotype

IgG1

Application

FACS

Reactivity

Human, Rabbit, Cat, Ferret, Primate
Package
100 test
View product citations for antibody GTX00556-11 on CiteAb

APPLICATION

Application Note

*Optimal dilutions/concentrations should be determined by the researcher.
Application Recommended Dilution
FACS 4 μl reagent / 100 μl of whole blood or 10⁶ cells in a suspension
Not tested in other applications.

Calculated MW

45 kDa. ( Note )

Product Note

The epitope is localized within ammino acids 1 - 160.
We do not recommend use of this product for Mouse,Rat samples.

PROPERTIES

Form

Liquid

Buffer

PBS

Preservative

15mM Sodium azide

Storage

Store as concentrated solution. Centrifuge briefly prior to opening vial. Store at 4ºC. DO NOT FREEZE. Protect from light.

Concentration

Batch dependent (Please refer to the vial label for the specific concentration.)

Antigen Species

Human

Immunogen

Purified CD271 protein isolated from human melanoma cell line A875

Purification

Purified by size-exclusion chromatography

Conjugation

Peridinin-chlorophyll proteins-Cyanine5.5 (PerCP-Cy5.5) Wavelength

Note

For laboratory use only. Not for any clinical, therapeutic, or diagnostic use in humans or animals. Not for animal or human consumption. Cy and CyDye are trademarks of GE Healthcare.

TARGET

Synonyms

CD271 , Gp80LNGFR , NGFR , TNFRSF16 , nerve growth factor receptor , p75(NTR) , p75NTR , p75 NGF Receptor , p75 NTR , p75 NGFR

Cellular Localization

Membrane

Background

Nerve growth factor receptor contains an extracellular domain containing four 40-amino acid repeats with 6 cysteine residues at conserved positions followed by a serine/threonine-rich region, a single transmembrane domain, and a 155-amino acid cytoplasmic domain. The cysteine-rich region contains the nerve growth factor binding domain. [provided by RefSeq, Jul 2008]

Database

Clone Reference

T Okumura et al. Int J Oncol 2014; 44 (6):1923-32 MicroRNA-203 inhibits the progression of esophageal squamous cell carcinoma with restored epithelial tissue architecture in vivo
Application : FACS
Reactivity : Human

REVIEW

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Clone Reference
T Okumura et al. Int J Oncol 2014; 44 (6):1923-32 MicroRNA-203 inhibits the progression of esophageal squamous cell carcinoma with restored epithelial tissue architecture in vivo
Application : FACS
Reactivity : Human
SDS
PBS.pdf
Sodium Azide.pdf