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AB73996

Anti-ALK (phospho Y1507) antibody

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(6 Publications)

Rabbit Polyclonal ALK phospho Y1507 antibody. Suitable for WB, IHC-P and reacts with African green monkey, Human samples. Cited in 6 publications. Immunogen corresponding to Synthetic Peptide within Human ALK phospho Y1507.

View Alternative Names

CD246, ALK tyrosine kinase receptor, Anaplastic lymphoma kinase, ALK

2 Images
Western blot - Anti-ALK (phospho Y1507) antibody (AB73996)
  • WB

Unknown

Western blot - Anti-ALK (phospho Y1507) antibody (AB73996)

All lanes:

Western blot - Anti-ALK (phospho Y1507) antibody (ab73996) at 1/500 dilution

Lane 1:

extracts from COS cells, treated with anisomycin (25ug/ml, 30mins) at 30 µg

Lane 2:

extracts from COS cells, treated with anisomycin (25ug/ml, 30mins) at 30 µg with immunising phosphopeptide

Predicted band size: 176 kDa

Observed band size: 176 kDa

false

Immunohistochemistry (Formalin/PFA-fixed paraffin-embedded sections) - Anti-ALK (phospho Y1507) antibody (AB73996)
  • IHC-P

Unknown

Immunohistochemistry (Formalin/PFA-fixed paraffin-embedded sections) - Anti-ALK (phospho Y1507) antibody (AB73996)

Immunohistochemistry analysis of paraffin-embedded human brain tissue using 1/50 ab73996. Left : untreated sample. Right : sample treated with immunising peptide.

Key facts

Host species

Rabbit

Clonality

Polyclonal

Isotype

IgG

Carrier free

No

Reacts with

Human, African green monkey

Applications

IHC-P, WB

applications

Immunogen

Synthetic Peptide within Human ALK phospho Y1507. The exact immunogen used to generate this antibody is proprietary information.

Q9UM73

Reactivity data

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Properties and storage information

Form
Liquid
Purification technique
Affinity purification Immunogen
Purification notes
The antibody against non-phosphopeptide was removed by chromatographyusing non-phosphopeptide corresponding to the phosphorylation site.
Storage buffer
pH: 7.4 Preservative: 0.02% Sodium azide Constituents: PBS, 50% Glycerol (glycerin, glycerine), 0.87% Sodium chloride
Shipped at conditions
Blue Ice
Appropriate short-term storage conditions
+4°C
Appropriate long-term storage conditions
-20°C
Aliquoting information
Upon delivery aliquot
Storage information
Avoid freeze / thaw cycle

Supplementary information

This supplementary information is collated from multiple sources and compiled automatically.

The Anaplastic Lymphoma Kinase commonly referred to as ALK is a receptor tyrosine kinase known for its role in cell signaling. It is sometimes called CD246. ALK has a molecular mass of approximately 180 kDa. This protein finds expression predominantly in the central and peripheral nervous system with prominence in neural tissue during development. The ALK protein belongs to the insulin receptor superfamily exhibiting kinase activity that promotes signal transduction processes associated with growth and differentiation.
Biological function summary

ALK influences cell growth survival and differentiation playing a significant role during the development of the nervous system. As part of its biological activity the ALK protein can become a component of larger signaling complexes participating as an important activator or mediator. Evidence suggests ALK's involvement in neuronal differentiation and synaptogenesis. Its activity impacts intracellular pathways consequently modulating biological processes relevant to neural tissue and oncogenesis.

Pathways

ALK acts within the MAPK and PI3K-AKT signaling pathways. These pathways enable the transduction of signals from the cell surface to the nucleus influencing cellular outcomes such as proliferation and survival. In these pathways ALK interacts with various other proteins including GRB2 and PI3K which further facilitate downstream signaling. Proper functioning of these pathways is essential to maintaining cellular homeostasis and development.

ALK has a significant relationship with certain types of cancer such as non-small cell lung carcinoma and anaplastic large cell lymphoma. Genetic alterations in ALK such as translocations or mutations can lead to the uncontrolled activation of its kinase activity resulting in oncogenic transformation. In these contexts the ALK protein often interacts with EML4 in lung cancer through a fusion forming an oncogenic driver. Targeting ALK with anti-ALK antibodies or small molecule inhibitors has emerged as a therapeutic strategy to manage these malignancies.

Product protocols

For this product, it's our understanding that no specific protocols are required. You can visit:

Target data

Neuronal receptor tyrosine kinase that is essentially and transiently expressed in specific regions of the central and peripheral nervous systems and plays an important role in the genesis and differentiation of the nervous system (PubMed : 11121404, PubMed : 11387242, PubMed : 16317043, PubMed : 17274988, PubMed : 30061385, PubMed : 34646012, PubMed : 34819673). Also acts as a key thinness protein involved in the resistance to weight gain : in hypothalamic neurons, controls energy expenditure acting as a negative regulator of white adipose tissue lipolysis and sympathetic tone to fine-tune energy homeostasis (By similarity). Following activation by ALKAL2 ligand at the cell surface, transduces an extracellular signal into an intracellular response (PubMed : 30061385, PubMed : 33411331, PubMed : 34646012, PubMed : 34819673). In contrast, ALKAL1 is not a potent physiological ligand for ALK (PubMed : 34646012). Ligand-binding to the extracellular domain induces tyrosine kinase activation, leading to activation of the mitogen-activated protein kinase (MAPK) pathway (PubMed : 34819673). Phosphorylates almost exclusively at the first tyrosine of the Y-x-x-x-Y-Y motif (PubMed : 15226403, PubMed : 16878150). Induces tyrosine phosphorylation of CBL, FRS2, IRS1 and SHC1, as well as of the MAP kinases MAPK1/ERK2 and MAPK3/ERK1 (PubMed : 15226403, PubMed : 16878150). ALK activation may also be regulated by pleiotrophin (PTN) and midkine (MDK) (PubMed : 11278720, PubMed : 11809760, PubMed : 12107166, PubMed : 12122009). PTN-binding induces MAPK pathway activation, which is important for the anti-apoptotic signaling of PTN and regulation of cell proliferation (PubMed : 11278720, PubMed : 11809760, PubMed : 12107166). MDK-binding induces phosphorylation of the ALK target insulin receptor substrate (IRS1), activates mitogen-activated protein kinases (MAPKs) and PI3-kinase, resulting also in cell proliferation induction (PubMed : 12122009). Drives NF-kappa-B activation, probably through IRS1 and the activation of the AKT serine/threonine kinase (PubMed : 15226403, PubMed : 16878150). Recruitment of IRS1 to activated ALK and the activation of NF-kappa-B are essential for the autocrine growth and survival signaling of MDK (PubMed : 15226403, PubMed : 16878150).
See full target information ALK phospho Y1507

Publications (6)

Recent publications for all applications. Explore the full list and refine your search

American journal of cancer research 12:4825-4839 PubMed36381313

2022

MDK induces temozolomide resistance in glioblastoma by promoting cancer stem-like properties.

Applications

Unspecified application

Species

Unspecified reactive species

Xuehui Yu,Zhuan Zhou,Siyuan Tang,Kun Zhang,Xingzhi Peng,Peijun Zhou,Mingyu Zhang,Liangfang Shen,Lifang Yang

Cell reports 36:109363 PubMed34260934

2021

Extracellular domain shedding of the ALK receptor mediates neuroblastoma cell migration.

Applications

Unspecified application

Species

Unspecified reactive species

Hao Huang,Alexander Gont,Lynn Kee,Ruben Dries,Kathrin Pfeifer,Bandana Sharma,David N Debruyne,Matthew Harlow,Satyaki Sengupta,Jikui Guan,Caleb M Yeung,Wenchao Wang,Bengt Hallberg,Ruth H Palmer,Meredith S Irwin,Rani E George

Cell stem cell 26:579-592.e6 PubMed32142683

2020

Formation of Human Neuroblastoma in Mouse-Human Neural Crest Chimeras.

Applications

Unspecified application

Species

Unspecified reactive species

Malkiel A Cohen,Shupei Zhang,Satyaki Sengupta,Haiting Ma,George W Bell,Brendan Horton,Bandana Sharma,Rani E George,Stefani Spranger,Rudolf Jaenisch

Nature 572:676-680 PubMed31391581

2019

BORIS promotes chromatin regulatory interactions in treatment-resistant cancer cells.

Applications

Unspecified application

Species

Unspecified reactive species

David N Debruyne,Ruben Dries,Satyaki Sengupta,Davide Seruggia,Yang Gao,Bandana Sharma,Hao Huang,Lisa Moreau,Michael McLane,Daniel S Day,Eugenio Marco,Ting Chen,Nathanael S Gray,Kwok-Kin Wong,Stuart H Orkin,Guo-Cheng Yuan,Richard A Young,Rani E George

PLoS genetics 12:e1006239 PubMed27494611

2016

Comprehensive Analysis of the Transcriptional and Mutational Landscape of Follicular and Papillary Thyroid Cancers.

Applications

Unspecified application

Species

Unspecified reactive species

Seong-Keun Yoo,Seungbok Lee,Su-Jin Kim,Hyeon-Gun Jee,Byoung-Ae Kim,Hyesun Cho,Young Shin Song,Sun Wook Cho,Jae-Kyung Won,Jong-Yeon Shin,Do Joon Park,Jong-Il Kim,Kyu Eun Lee,Young Joo Park,Jeong-Sun Seo

Oncoimmunology 5:e1108514 PubMed27141364

2016

EML4-ALK enhances programmed cell death-ligand 1 expression in pulmonary adenocarcinoma via hypoxia-inducible factor (HIF)-1α and STAT3.

Applications

Unspecified application

Species

Unspecified reactive species

Jaemoon Koh,Ji-Young Jang,Bhumsuk Keam,Sehui Kim,Moon-Young Kim,Heounjeong Go,Tae Min Kim,Dong-Wan Kim,Chul-Woo Kim,Yoon Kyung Jeon,Doo Hyun Chung
View all publications

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