Yeast Surface Display

Yeast surface display is a bioengineering technique that presents engineered proteins or peptides on the exterior of yeast cells, enabling their properties to be analyzed while the cells remain viable. Typically, a protein of interest is genetically fused to a yeast cell-wall anchor, so expression directs the fusion product to the surface and physically links its phenotype to the encoding DNA inside the cell. Researchers can then use fluorescence-activated cell sorting or affinity-based selection to enrich cells displaying proteins with desired binding, catalytic, or stability characteristics. This platform supports antibody engineering, directed evolution, biomaterial development, and screening for improved protein function.

Yeast Surface Display - Related Videos

Research

JoVE Journal - Bioengineering
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Protein Engineering by Yeast Surface Display

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Cited by 1 •

2024

This protocol describes the essential steps for conducting yeast surface display selection campaigns to enrich protein variants binding to an antigen of interest.

Research

JoVE Journal - Bioengineering

Enzymatic Modification and Flow Cytometry Assessment of Yeast Surface Displayed Proteins

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2025

Here, we introduce a protocol for using yeast surface-displayed substrates for enzymatic modification assays. The platform was demonstrated using the analysis of the dephosphorylation activity of tyrosine phosphatase SHP-2 against one of its substrates as a representative enzymatic modification assay.

Surface Spreading and Immunostaining of Yeast Chromosomes

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Cited by 36 •

2015

A method for surface-spreading chromosomes from budding yeast is presented. This method is derived from a method previously described by Loidl and Klein. In addition, we demonstrate a procedure for immunostaining of spread chromosomes.

Education

JoVE Science Education - Basic Biology

Yeast Maintenance

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2023

Research performed in the yeast Saccharomyces cerevisiae has significantly improved our understanding of important cellular phenomona such as regulation of the cell cycle, aging, and cell death. The many benefits of working with S. cerevisiae include the facts that they are inexpensive to grow in the lab and that many ready-to-use strains are now commercially available. Nevertheless, proper maintenance of this organism is critical for successful experiments. This video will provide an overview...

Enhancement Method of Surface Acoustic Wave-Atomizer Efficiency for Olfactory Display

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Cited by 1 •

2018

We establish here a method for coating the surface of a surface acoustic wave (SAW) device with amorphous Teflon film to improve the atomization efficiency required for application to an olfactory display.

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