bs-3022R-Cy7 [Conjugated Primary Antibody]
ALK (Tyr1604) Polyclonal Antibody, Cy7 Conjugated
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Host: Rabbit

Target Protein: ALK Tyr1604

Modification Site: Tyr1604

Clonality: Polyclonal

Isotype: IgG

Entrez Gene: 238

Swiss Prot: Q9UM73

Source: KLH conjugated synthetic phosphopeptide derived from human ALK around the phosphorylation site of Tyr1604

Purification: Purified by Protein A.

Storage Buffer: Aqueous buffered solution containing 0.01M TBS (pH 7.4) with 1% BSA, 0.02% Proclin300 and 50% Glycerol.

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

Background:

This gene encodes a receptor tyrosine kinase, which belongs to the insulin receptor superfamily. This protein comprises an extracellular domain, an hydrophobic stretch corresponding to a single pass transmembrane region, and an intracellular kinase domain. It plays an important role in the development of the brain and exerts its effects on specific neurons in the nervous system. This gene has been found to be rearranged, mutated, or amplified in a series of tumours including anaplastic large cell lymphomas, neuroblastoma, and non-small cell lung cancer. The chromosomal rearrangements are the most common genetic alterations in this gene, which result in creation of multiple fusion genes in tumourigenesis, including ALK (chromosome 2)/EML4 (chromosome 2), ALK/RANBP2 (chromosome 2), ALK/ATIC (chromosome 2), ALK/TFG (chromosome 3), ALK/NPM1 (chromosome 5), ALK/SQSTM1 (chromosome 5), LK/KIF5B (chromosome 10), ALK/CLTC (chromosome 17), ALK/TPM4 (chromosome 19), and ALK/MSN (chromosome X).[provided by RefSeq, Jan 2011].

Conjugation: Cy7

Excitation/ Emission: 743nm/767nm

Size: 100ul

Concentration: 1ug/ul

Applications: FCM(1:20-100)
IF(IHC-P)(1:50-200)
IF(IHC-F)(1:50-200)
IF(ICC)(1:50-200)

Predicted Molecular Weight: 174


Cross Reactive Species: Human
Others

Predicted Cross Reactive Species: Pig
Guinea Pig

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

PRODUCT SPECIFIC PUBLICATIONS
  • Xuejiao Zhou. et al. The novel ALK inhibitor ZX\29 induces apoptosis through inhibiting ALK and inducing ROS\mediated endoplasmic reticulum stress in Karpas299 cells. 2020 Nov 02Read more>>
  • Ying Gao. et al. ZYY-B-2, a novel ALK inhibitor, overcomes resistance to ceritinib by inhibiting P-gp function and induces apoptosis through mitochondrial pathway in ceritinib-resistant H2228?cells. CHEM-BIOL INTERACT. 2023 Jul;379:110516Read more>>