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BRAND / VENDOR: Abcam

Abcam, ab189815, Beta Galactosidase Assay Kit (LacZ, Blue)

CATALOG NUMBER: ab189815
Precio habitual$0.99
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Product Description

Size: 500Test
Beta Galactosidase Assay Kit (LacZ, Blue) (ab189815) uses the CUG beta galactosidase enzyme substrate to detect LacZ+ cells. Readout on flow cytometer or plate reader. - Blue fluorescence readout allows dual-staining with fluorescein based probes (eg FITC-labeled antibodies)
Key facts
Assay type:Quantitative,
Assay Platform:Flow cytometer

Product details:
Beta Galactosidase Assay Kit (LacZ, Blue) ab189815 is based on the fluorogenic substrate 3-carboxyumbelliferyI β-D-galactopyranoside (CUG) (blue fluorescence, Ex/Em 390/460 nm), with readout on flow cytometer or fluorometric plate reader. Due to the blue fluorescent readout, ab189815 is especially useful for dual-labeling experiments where the cells to be analyzed are also labeled with a fluorescein based probe (FITC-labeled antibody, fluorescein-based substrate, etc.).
Enough reagents are included to perform up to 500 tests (10 x 96 well microtitre plates).
Other Beta Galactosidase Assay Kits and Staining Kits
To measure beta galactosidase activity as part of a senescence assay:
- use Beta Galactosidase Staining Kit (Senescence)
ab65351
to stain senescent cells blue and visualize by light microscopy
- use Beta Galactosidase Assay Kit (Senescence)
ab228562
to detect beta galactosidase activity in senescent cells by flow cytometry.
To measure beta galactosidase activity as part of a LacZ assay with cell cultures:
- use Beta Galactosidase Assay Kit (LacZ, Green)
ab176721
in an easy-to-use assay with readout on fluorometric plate reader
- use Beta Galactosidase Staining Kit (LacZ)
ab102534
to stain LacZ cells blue and visualize by light microscopy
Beta Galactosidase Assay Kit (Green)
ab287846
is used to measure Beta Galactosidase in homogenized cell or tissue samples with readout on fluorometric plate reader.
Other Notes
This product was previously called FACS Blue LacZ beta Galactosidase detection kit.

Properties and Storage Information:
Shipped at conditions-Blue Ice, Appropriate short-term storage conditions--20°C, Appropriate long-term storage conditions--20°C, Storage information--20°C

Supplementary Information:
This supplementary information is collated from multiple sources and compiled automatically.
Beta-galactosidase also known as beta-gal or b-gal is an enzyme with a molecular weight of approximately 116 kDa. It catalyzes the hydrolysis of beta-galactosides into monosaccharides. Beta-galactosidase functions mainly in the lysosomes but also localizes to the cytosol and plasma membranes in some cell types. Notably in prokaryotic systems like E. coli beta-galactosidase's expression is highly regulated often serving as a model for gene regulation studies.
Biological function summary
The enzyme plays a significant role in carbohydrate metabolism by breaking down lactose into glucose and galactose which cells use for energy. It is part of a larger enzyme complex known as the lac operon in bacteria which involves other proteins such as lacZ. This operon functions to regulate the metabolic conversion of lactose when glucose is scarce allowing for tight control and efficient resource utilization.
Pathways
Beta-galactosidase is integral to the lactose degradation pathway. This pathway supplies glucose to the glycolytic cascade facilitating energy production in cells. In eukaryotes the enzyme's metabolic role connects with galactose metabolism intersecting pathways where enzymes like galactokinase and aldolase play important roles. These interrelations ensure precise metabolic balancing and adaptation to nutrient availability.
Deficiencies in beta-galactosidase are linked to metabolic diseases such as galactosialidosis and GM1 gangliosidosis. Galactosialidosis involves a malfunction in a complex with protective protein/cathepsin A while GM1 gangliosidosis results from ineffective ganglioside metabolism affecting nervous system function. These conditions highlight the importance of beta-galactosidase in normal metabolic processes and neurological health.


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