Rabbit Polyclonal PFKM antibody. Suitable for IP, WB and reacts with Human, Mouse samples. Cited in 1 publication. Immunogen corresponding to Synthetic Peptide within Human PFKM aa 700 to C-terminus.
View Alternative Names
PFKX, PFKM, ATP-PFK, PFK-M, 6-phosphofructokinase type A, Phosphofructo-1-kinase isozyme A, Phosphohexokinase, PFK-A
- IP
Supplier Data
Immunoprecipitation - Anti-PFKM antibody (AB240754)
PFKM was immunoprecipitated from HEK-293T (human epithelial cell line from embryonic kidney transformed with large T antigen) whole cell lysate (1 mg for IP, 20% of IP loaded) with ab240754 at 6 μg/reaction. Western blot was performed from the immunoprecipitate using ab240754 at 1 μg/ml.
Lane 1 : ab240754 IP in HEK-293T whole cell lysate.
Lane 2 : Control IgG IP in HEK-293T whole cell lysate.
Detection : Chemiluminescence with exposure time of 3 seconds.
All lanes:
Immunoprecipitation - Anti-PFKM antibody (ab240754)
Predicted band size: 85 kDa
false
- WB
Supplier Data
Western blot - Anti-PFKM antibody (AB240754)
All lanes:
Western blot - Anti-PFKM antibody (ab240754) at 0.1 µg/mL
Lane 1:
HeLa (human epithelial cell line from cervix adenocarcinoma) whole cell lysate at 50 µg
Lane 2:
HEK-293T (human epithelial cell line from embryonic kidney transformed with large T antigen) whole cell lysate at 50 µg
Lane 3:
Jurkat (human T cell leukemia cell line from peripheral blood) whole cell lysate at 50 µg
Lane 4:
TCMK-1 (mouse kidney epithelial cell line) whole cell lysate at 50 µg
Lane 5:
NIH/3T3 (mouse embryo fibroblast cell line) whole cell lysate at 50 µg
Predicted band size: 85 kDa
false
Reactivity data
Properties and storage information
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Purification technique
Storage buffer
Shipped at conditions
Appropriate short-term storage duration
Appropriate short-term storage conditions
Appropriate long-term storage conditions
Aliquoting information
Storage information
Supplementary information
This supplementary information is collated from multiple sources and compiled automatically.
Biological function summary
PFKM acts as an important regulatory component in glycolysis because it controls the rate-limiting step of this metabolic pathway. It forms a homo-tetramer complex which can vary in its exact subunit composition to modulate activity based on cellular energy requirements. The presence of allosteric sites on PFKM allows it to respond to different metabolic signals such as ATP and AMP levels highlighting its role in energy homeostasis. The ability to alter its conformation and enzymatic activity enables PFKM to efficiently regulate energy production and consumption at the cellular level.
Pathways
PFKM plays a pivotal role in the glycolytic pathway facilitating the breakdown of glucose for energy production. This enzyme not only relates to the glycolysis pathway but also interacts with other key proteins such as hexokinase and pyruvate kinase forming a tightly controlled network for efficient metabolic flow. PFKM's activity influences downstream processes including the citric acid cycle and oxidative phosphorylation through its provision of pyruvate.
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Target data
Publications (1)
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Acta biochimica et biophysica Sinica 57:1391-1405 PubMed40589411
2025
Applications
Unspecified application
Species
Unspecified reactive species
Product promise
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