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  • ‹ Back to Yeast two-hybrid system
  • Matchmaker Gold Yeast Two-Hybrid System
  • Yeast two-hybrid libraries
  • Yeast two-hybrid library construction
  • Yeast two-hybrid vectors
  • Yeast strains
  • Prey rescue by colony PCR
Home › Products › Protein research › Two-hybrid and one-hybrid systems › Yeast two-hybrid system › Yeast strains

Two-hybrid and one-hybrid systems

  • Yeast two-hybrid system
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Yeast strains for yeast two-hybrid screening

We offer two highly specialized yeast strains, Y2HGold and Y187, that are optimized for exceptionally stringent two-hybrid library screening and two-hybrid library construction, respectively.

We offer two highly specialized yeast strains, Y2HGold and Y187, that are optimized for exceptionally stringent two-hybrid library screening and two-hybrid library construction, respectively.

Y2HGold Yeast Strain

Y2HGold plays a crucial role in establishing the high stringency of our Matchmaker Gold Yeast Two-Hybrid System due to its four integrated reporter genes (AUR1-C, ADE2, HIS3, and MEL1), which are under the control of three distinct Gal4-responsive promoters.

The Matchmaker Gold Yeast Two-Hybrid System is the only yeast two-hybrid system with four genuine reporters and three different bait recognition sequences. Background growth is not possible due to the potency and stability of Aureobasidin A, a novel yeast two-hybrid antibiotic that kills all non-resistant cells. False positives are reduced to a minimum because any independently binding prey protein would need to bind to all three recognition sequences and activate four different reporters.

Y187 Yeast Strain

Y187 is used in the construction of our Mate & Plate and normalized Mate & Plate Libraries, which are recommended for use with the Matchmaker Gold Yeast Two-Hybrid System. These complex, tissue-specific, ready-to-go libraries are constructed directly in our Y187 library yeast stain, utilizing the highly efficient homologous recombination machinery of Saccharomyces cerevisiae. Mate & Plate Libraries provide, by far, the simplest method for yeast two-hybrid screening because they do not require library-scale transformations or labor-intensive library amplification.

You can also use the Y187 Yeast Strain with our convenient Make Your Own "Mate & Plate" Library System to construct your own yeast two-hybrid libraries, and eliminate the time-consuming and labor-intensive library cloning, amplification, and harvesting in E. coli that are required by traditional methods of library construction.

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Cat. # Product Size Price License Quantity Details
630457 Y187 Yeast Strain 0.5 mL USD $628.00

The Saccharomyces cerevisiae strain Y187 is for use with Clontech's Matchmaker Gold Yeast Two-Hybrid System as a mating partner for the Y2HGold reporter strain. Clontech's Mate & Plate Libraries are constructed in Y187.

Notice to purchaser

Our products are to be used for Research Use Only. They may not be used for any other purpose, including, but not limited to, use in humans, therapeutic or diagnostic use, or commercial use of any kind. Our products may not be transferred to third parties, resold, modified for resale, or used to manufacture commercial products or to provide a service to third parties without our prior written approval.

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Library generation using n vivo recombination in S. cerevisiae. Mate & Plate Libraries are created via recombination between your cDNA and the Matchmaker prey vector pGADT7-Rec.

 Library generation using n vivo recombination in S. cerevisiae. Mate & Plate Libraries are created via recombination between your cDNA and the Matchmaker prey vector pGADT7-Rec.
Library generation using in vivo recombination in S. cerevisiae. Mate & Plate Libraries are created via recombination between your cDNA and the Matchmaker prey vector pGADT7-Rec. The homologues are generated by SMART cDNA synthesis. Colonies are pooled, mixed, and aliquoted into multiple vials. Each single 1 ml vial can be used for a two-hybrid screen.

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630457: Y187 Yeast Strain

630457: Y187 Yeast Strain
630498 Y2HGold Yeast Strain 0.5 mL USD $693.00

The Saccharomyces cerevisiae strain Y2HGold is designed for use with Takara Bio's Matchmaker Gold Yeast Two-Hybrid System. Y2HGold includes the sensitive Aureobasidin A antibiotic resistance gene as one of four reporters—providing exceptionally stringent yeast two-hybrid (Y2H) screening. This strain contains distinct ADE2, HIS3, MEL1, and AUR1-C reporter constructs that are only expressed in the presence of GAL4-based protein interactions. Y2HGold is extremely effective in minimizing false positive protein interactions and background during a typical GAL4-based two-hybrid screen.

Notice to purchaser

Our products are to be used for Research Use Only. They may not be used for any other purpose, including, but not limited to, use in humans, therapeutic or diagnostic use, or commercial use of any kind. Our products may not be transferred to third parties, resold, modified for resale, or used to manufacture commercial products or to provide a service to third parties without our prior written approval.

Documents Components Image Data

Back

The yeast two-hybrid principle

The yeast two-hybrid principle
The yeast two-hybrid principle. A bait protein interacts with the GAL4 recognition sequence (or promoter) upstream of a reporter gene. Transcription of the reporter is activated when a prey protein containing the GAL4 transcriptional activation domain interacts with the bait.

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Matchmaker Gold reporter genes

Matchmaker Gold reporter genes
Matchmaker Gold reporter genes. Yeast strain Y2HGold expresses 4 genes from 3 separate GAL4-responsive promoters in response to protein-protein interactions.

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630498: Y2HGold Yeast Strain

630498: Y2HGold Yeast Strain

Overview

  • Y2HGold provides four reporters for exceptionally stringent two-hybrid screening with Matchmaker Gold
  • Use Y187 for simplified library construction & screening with the Mate & Plate system
  • Y2HGold and Y187 have opposite mating types, so they are perfect mating partners

More Information

Applications

  • Yeast two-hybrid screening
  • Yeast two-hybrid library construction

Additional product information

Please see the product's Certificate of Analysis for information about storage conditions, product components, and technical specifications. Please see the Kit Components List to determine kit components. Certificates of Analysis and Kit Components Lists are located under the Documents tab.

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Takara Bio USA, Inc. provides kits, reagents, instruments, and services that help researchers explore questions about gene discovery, regulation, and function. As a member of the Takara Bio Group, Takara Bio USA is part of a company that holds a leadership position in the global market and is committed to improving the human condition through biotechnology. Our mission is to develop high-quality innovative tools and services to accelerate discovery.

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  • Protein research
  • Antibodies and ELISA
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  • Special offers
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  • Viral detection with qPCR
  • SARS-CoV-2 pseudovirus
  • Human ACE2 stable cell line
  • Viral RNA isolation
  • Viral and host sequencing
  • Vaccine development
  • CRISPR screening
  • Drug discovery
  • Immune profiling
  • Publications
  • Next-generation sequencing
  • Spatial omics
  • RNA-seq
  • DNA-seq
  • Single-cell NGS automation
  • Reproductive health
  • Bioinformatics tools
  • Immune profiling
  • Real-time PCR
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  • Signature enzymes
  • High-throughput real-time PCR solutions
  • Detection assays
  • References, standards, and buffers
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  • Media, differentiation kits, and matrices
  • Stem cells and stem cell-derived cells
  • mRNA and cDNA synthesis
  • In vitro transcription
  • cDNA synthesis kits
  • Reverse transcriptases
  • RACE kits
  • Purified cDNA & genomic DNA
  • Purified total RNA and mRNA
  • PCR
  • Most popular polymerases
  • High-yield PCR
  • High-fidelity PCR
  • GC rich PCR
  • PCR master mixes
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  • In-Fusion seamless cloning
  • Competent cells
  • Ligation kits
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  • Identification and characterization
  • SARS-CoV-2
  • Antibiotic-resistant bacteria
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  • Waterborne disease outbreaks
  • Viral-induced cancer
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  • T-cell therapy
  • Antibody therapeutics
  • T-cell receptor profiling
  • TBI initiatives in cancer therapy
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  • Kickstart your cancer research with long-read sequencing
  • Sample prep from FFPE tissue
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  • Cancer biomarker quantification
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