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MABN702

Sigma-Aldrich

Anti-HK2 Antibody, clone 3D3

ascites fluid, clone 3D3, from mouse

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Synonym(s):
Hexokinase-2, Hexokinase type II, HK II, Muscle form hexokinase, HK2
UNSPSC Code:
12352203
eCl@ss:
32160702
NACRES:
NA.41

biological source

mouse

Quality Level

antibody form

ascites fluid

antibody product type

primary antibodies

clone

3D3, monoclonal

species reactivity

human

technique(s)

flow cytometry: suitable
immunohistochemistry: suitable
western blot: suitable

isotype

IgG1

UniProt accession no.

shipped in

wet ice

target post-translational modification

unmodified

Gene Information

human ... HK2(3099)

Related Categories

General description

There are four hexokinases in most vertebrates, hexokinase I, II, III, and IV; HK2 is hexokinase-II (Hexokinase-2). Hexokinase-2 (HK2) or alternatively Hexokinase type II (HK II) or muscle form hexokinase is the predominant hexokinase enzyme expressed in insulin-responsive tissues like skeletal muscle and other tissues like brain. HK2 is also expressed at high levels in many cancers which is thought to aid in their survival. HK2 is responsible for the phosphorylation of hexoses such as glucose into glucose-6-phosphate; the initial step in carbohydrate metabolism. HK2 is typically associated with mitochondrial membranes. Over expression of HK2 is associated with resistance to cell death and often given the name of the “Warburg Effect” after the initial discover of the relationship between energy metabolism and cell death. While HK2 overexpression has been shown to be one of the mechanisms for the survival of cancers, it has also been shown to facilitate the survival of normal, non-cancerous tissues such as neurons and astrocytes in response to injury and stress. Thus because of its relationship to energy metabolism and its connection with cell death and survival, HK2 is being examined as a potential target for treatment of everything from brain tumors to aging. EMD-Millipore’s Anti-HK2 mouse monoclonal has been tested in western blot on Jurkat, HeLa, and HEK293 cell lysates and in paraffin embedded immunohistochemistry on esophagus and human lung cancer tissues and in flow cytometry on K562 cells in culture.

Immunogen

Purified recombinant fragment of human HK2 expressed in E. Coli.

Application

Detect Hexokinase II using this mouse monoclonal antibody, Anti-HK2 Antibody, clone 3D3 validated for use in western blotting, IHC & Flow Cytometry.
Immunohistochemistry Analysis: A 1:200-1,000 dilution from a representative lot detected HK2 in human esophagus cancer and lung cancer tissues.

Flow cytometry analysis: A 1:200-400 dilution from a representative lot detected HK2 in K562 cells.

Optimal working dilutions must be determined by end user.


Research Category
Neuroscience
Research Sub Category
Signaling Neuroscience

Quality

Evaluated by Western Blotting in Jurkat, HeLa, and HEK293 cell lysates.

Western Blotting Analysis: A 1:500-2,000 dilution of this antibody detected HK2 in Jurkat, HeLa, and HEK293 cell lysates.

Target description

~102 kDa observed. Uncharacterized bands may appear in some lysate(s).

Physical form

Mouse monoclonal IgG1 ascitic fluid containing up to 0.1% sodium azide.
Unpurified

Storage and Stability

Stable for 1 year at -20°C from date of receipt.
Handling Recommendations: Upon receipt and prior to removing the cap, centrifuge the vial and gently mix the solution. Aliquot into microcentrifuge tubes and store at -20°C. Avoid repeated freeze/thaw cycles, which may damage IgG and affect product performance.

Analysis Note

Control
Jurkat, HeLa, and HEK293 cell lysates

Disclaimer

Unless otherwise stated in our catalog or other company documentation accompanying the product(s), our products are intended for research use only and are not to be used for any other purpose, which includes but is not limited to, unauthorized commercial uses, in vitro diagnostic uses, ex vivo or in vivo therapeutic uses or any type of consumption or application to humans or animals.

WGK

nwg


Certificates of Analysis (COA)

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Helena Ramos et al.
International journal of molecular sciences, 21(2) (2020-01-23)
The Warburg effect is an emerging hallmark of cancer, which has the tumor suppressor p53 as its major regulator. Herein, we unveiled that p53 activation by (S)-tryptophanol-derived oxazoloisoindolinone (SLMP53-1) mediated the reprograming of glucose metabolism in cancer cells and xenograft

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