X-gal Substrate

X-gal substrate is a chromogenic compound used to detect β-galactosidase activity, making it a valuable reporter reagent in biological techniques. β-galactosidase hydrolyzes X-gal, producing an insoluble blue-colored compound that marks cells, colonies, or tissues expressing the enzyme, often through the lacZ reporter gene. This color reaction supports blue-white screening to identify recombinant bacterial clones and enables histochemical localization of gene expression in experimental samples. Because the signal is readily visible without specialized instrumentation, X-gal helps researchers monitor transformation, promoter activity, and cellular patterns in molecular biology and developmental studies.

X-gal Substrate - Related Videos

Research

JoVE Journal - Biology
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Gene Trapping Using Gal4 in Zebrafish

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Cited by 19 •

2013

This protocol describes the method of gene trap insertional mutagenesis using Gal4-VP16 as the primary reporter and GFP/RFP as secondary reporters in zebrafish. Approximately one in ten high-expressing F0 fish yield gene trap progeny co-expressing GFP and RFP. The screening procedure can be readily scaled to adapt to the size of the laboratory performing the insertional mutagenesis screen.

Research

JoVE Journal - Genetics

Using the GAL4-UAS System for Functional Genetics in Anopheles gambiae

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Cited by 11 •

2021

The bipartite GAL4-UAS system is a versatile tool for modification of gene expression in a controlled spatiotemporal manner which permits functional genetic analysis in Anopheles gambiae. The procedures described for using this system are a semi-standardized cloning strategy, sexing and screening of pupae for fluorescent protein markers and embryo fixation.

Defining Substrate Specificities for Lipase and Phospholipase Candidates

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Cited by 10 •

2016

Many predicted (phospho)lipases are poorly characterized with regard to their substrate specificities and physiological functions. Here we provide a protocol to optimize enzyme activities, search for natural substrates, and propose physiological functions for these enzymes.

Identification of Kinase-substrate Pairs Using High Throughput Screening

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Cited by 1 •

2015

Protein phosphorylation is a central feature of how cells interpret and respond to information in their extracellular milieu. Here, we present a high throughput screening protocol using kinases purified from mammalian cells to rapidly identify kinases that phosphorylate a substrate(s) of interest.

Micropunching Lithography for Generating Micro- and Submicron-patterns on Polymer Substrates

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Cited by 1 •

2012

A micropunching lithography approach is developed to generate micro- and submicron-patterns on top, sidewall and bottom surfaces of polymer substrates. It overcomes the obstacles of patterning conducting polymers and generating sidewall patterns. This method allows rapid fabrication of multiple features and is free of aggressive chemistry.

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