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AD41105

107021-38-5 | 5-Bromo-4-chloro-3-indolyl-alpha-d-galactopyranoside

Packsize Purity Availability Price Discounted Price    Quantity
100mg 98% in stock $72.00 $51.00 -   +
250mg 98% in stock $139.00 $98.00 -   +
1g 98% in stock $366.00 $257.00 -   +
5g 98% in stock $1,500.00 $1,050.00 -   +

*All products are for research use only and not intended for human or animal use.

*All prices are in USD.

Description
Catalog Number: AD41105
Chemical Name: 5-Bromo-4-chloro-3-indolyl-alpha-d-galactopyranoside
CAS Number: 107021-38-5
Molecular Formula: C14H15BrClNO6
Molecular Weight: 408.629
MDL Number: MFCD00063780
SMILES: OC[C@H]1O[C@H](Oc2c[nH]c3c2c(Cl)c(cc3)Br)[C@@H]([C@H]([C@H]1O)O)O

 

Upstream Synthesis Route
  • X-α-Gal, also known as 5-bromo-4-chloro-3-indolyl-β-D-galactopyranoside, is a versatile compound widely used in chemical synthesis applications. This chromogenic substrate is commonly employed in molecular biology and biochemistry research for the detection of β-galactosidase activity.In chemical synthesis, X-α-Gal serves as a substrate for β-galactosidase, an enzyme that cleaves the galactosidic bond within the molecule. Upon hydrolysis by β-galactosidase, X-α-Gal yields a blue product due to the production of a galactose moiety that forms a blue precipitate in the presence of oxygen and a reducing agent. This colorimetric change allows for the visualization and quantification of enzymatic activity in various experimental settings.The unique properties of X-α-Gal make it an indispensable tool for assessing gene expression, screening recombinant plasmids, and monitoring cellular processes. By leveraging the selective enzymatic activity of β-galactosidase, researchers can efficiently track gene expression in bacterial colonies, identify positive clones in cloning experiments, and conduct high-throughput screening assays with ease.Overall, the application of X-α-Gal in chemical synthesis facilitates the rapid and reliable detection of β-galactosidase activity, enabling researchers to gain valuable insights into biological processes and advance their understanding of gene regulation mechanisms.
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