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Yeast Two-Hybrid Screening

Yeast Two-Hybrid Screening

Unraveling Protein Interactions

Yeast two-hybrid (Y2H) is a classic molecular biology technique for studying protein-protein interactions within cells. It was first proposed and initially established by Fields and others in 1989 during their research on the transcriptional regulation of eukaryotic genes. With the development of molecular biology, several techniques have been developed based on the yeast two-hybrid system, including yeast one-hybrid, membrane-based yeast two-hybrid, and yeast three-hybrid, which are used to study interactions between proteins, as well as between proteins and DNA/RNA/ligands. These techniques play a significant role in functional genomics and interactomics research.

Omics Empower Distinctive Advantage: Cutting-Edge Solutions

Leveraging the power of omics technologies, we are proud to unveil our distinctive advantage in the scientific arena. Here's a glimpse into the essence of our excellence.

Technological Superiority

  • High-throughput screening swiftly identifies proteins interacting with a target.

  • Reliable results from yeast cell expression systems reflect in vivo conditions.

  • High sensitivity captures even weak or transient protein interactions.

Sample Requirements of Yeast Two-Hybrid Screening

01
Experienced

With extensive experience in screening various types of bait genes, we design suitable screening plans.


02
Genuine and Reliable

We carefully explore the appropriate screening conditions for each bait from our customers; through one-on-one spreading and spotting verification, the probability of false positives is low; we provide the delivery of positive clone materials.


03
Large-scale Library Screening

We do not skimp on the number of plates laid out, ensuring a good growth environment for positive clones.


04
Multiple Sequencing Options

Choose between first-generation sequencing or second-generation sequencing based on the number of positive clones.


05
Professional Bioinformatics Team

For less common species, we can provide functional annotations for positive clones.


06
Aesthetic Experimental Images

We can provide results images at the level of CNS articles.


Yeast Library Process

Library
parameters
Gateway method for
building database
SAMRT method is used to
build the database
Library size (E. Coli)≥1x10^7cfu≥5x10^6cfu
Average length of insert≥1000bp≥1000bp
Recombination rate≥95%≥90%


Bait: We provide the CDS sequence of the bait protein or a well-constructed plasmid vector.

Library: For the nuclear system yeast two-hybrid, a library plasmid or yeast working solution is required; for the membrane system yeast two-hybrid, a library plasmid is provided.


READY TO DISCOVER MORE AT OMICS EMPOWER?
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    Singapore Global Headquarters: 112 ROBINSON ROAD #03-01

    Germany: Kreuzstr.60, 40210 Düsseldorf


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