bs-8368R-A488 [Conjugated Primary Antibody]
EGR2 Polyclonal Antibody, ALEXA FLUOR® 488 Conjugated
www.biossusa.com
[email protected]
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+1.781.569.5821 [INTERNATIONAL]
DATASHEET

Host: Rabbit

Target Protein: EGR2

Immunogen Range: 351-450/476


Clonality: Polyclonal

Isotype: IgG

Entrez Gene: 1959

Source: KLH conjugated synthetic peptide derived from human EGR2

Purification: Purified by Protein A.

Storage Buffer: Aqueous buffered solution containing 0.01M TBS (pH 7.4) with 1% BSA, 0.03% Proclin300 and 50% Glycerol.

Storage: Store at -20°C. Aliquot into multiple vials to avoid repeated freeze-thaw cycles.

Background:

Egr proteins function in transcription regulatory activities surrounding cellular growth, differentiation and function. The deduced amino acid sequences of human Egr-2 and mouse Egr-1 are 92% identical in the zinc finger region but show no homology elsewhere. Egr-2 is a sequence-specific DNA-binding transcription factor that binds two specific DNA sites located in the promoter region of HoxA4 and localizes to the nucleus. Defects in the Egr-2 protein are a cause of congenital hypomyelination neuropathy (CHN). CHN is characterized clinically by early onset of hypotonia, areflexia, distal muscle weakness and very slow nerve conduction velocities. Mutations in the gene that encodes Egr-2 (EGR2) also cause Dejerine-Sottas syndrome (DSS), which is also known as Dejerine-Sottas neuropathy (DSN) or hereditary motor and sensory neuropathy III (HMSN3). DSS patients exhibit severe early onset motor and sensory neuropathy with very slow nerve conduction velocities and elevated cerebrospinal fluid protein concentrations.

Conjugation: ALEXA FLUOR® 488

Excitation/ Emission: 490nm/525nm

Size: 100ul

Concentration: 1ug/ul

Applications: WB(1:300-5000)
IF(IHC-P)(1:50-200)
IF(IHC-F)(1:50-200)
IF(ICC)(1:50-200)

Predicted Molecular Weight: 50


Cross Reactive Species: Human
Mouse

Predicted Cross Reactive Species: Rat

For research use only. Not intended for diagnostic or therapeutic use.

PRODUCT SPECIFIC PUBLICATIONS
  • Balakrishnan et al. Temporal Analysis of Gene Expression in the Murine Schwann Cell Lineage and the Acutely Injured Postnatal Nerve. (2016) PLoS.On. 11:e0153256Read more>>
VALIDATION IMAGES