Yeast Transformation

Yeast transformation is a laboratory technique that introduces foreign DNA into yeast cells, enabling researchers to study genes or produce proteins in a eukaryotic model organism. In a common approach, lithium acetate and polyethylene glycol help plasmid DNA associate with the cell surface, while heat shock promotes DNA uptake; a selectable marker then allows transformed cells to grow on selective medium. The method supports gene cloning, heterologous protein expression, functional genomics, and synthetic biology. Because yeast combines relatively simple culture requirements with conserved cellular processes, transformation is valuable for investigating gene function, metabolic pathways, and engineered biological systems.

Yeast Transformation - Related Videos

Education

JoVE Science Education - Basic Biology

Yeast Transformation and Cloning

0 Views •

2023

S. cerevisiae are unicellular eukaryotes that are a commonly-used model organism in biological research. In the course of their work, yeast researchers rely upon the fundamental technique of transformation (the uptake of foreign DNA by the cell) to control gene expression, induce genetic deletions, express recombinant proteins, and label subcellular structures. This video provides an overview of how and why yeast transformation is carried out in the lab. The important features of yeast...

Research

JoVE EoE - Immunotherapy

Oral Delivery of Transformed Yeast Cells into the Mouse Intestinal Immune System

0 Views •

2025

This video showcases the oral administration of transformed yeast cells into a mouse model. The transformed yeast cells are orally administered using a gavage technique, reaching the mouse's stomach. Later, the cells migrate to the small intestine, where microfold cells engulf them and facilitate their transfer to Peyer's patches and gain access to the intestinal immune system.

Transformation of Probiotic Yeast and Their Recovery from Gastrointestinal Immune Tissues Following Oral Gavage in Mice

0 Views •

Cited by 2 •

2016

Presented here is a unified description of techniques that can be used to develop, transform, administer, and test heterologous protein expression of the probiotic yeast Saccharomyces boulardii.

Yeast Two-Hybrid Assay to Determine Protein Self-Association in Yeast Cells

0 Views •

2025

This video demonstrates the yeast two-hybrid assay to detect specific protein self-interactions. In this assay, the protein of interest is tagged to two domains of a transcription factor that encodes the β-galactosidase enzyme. When the two proteins interact, this causes transcription and translation to form the enzyme, which is then detected using a biochemical assay.

High-throughput Yeast Plasmid Overexpression Screen

0 Views •

Cited by 12 •

2011

Here we describe a plasmid overexpression screen in Saccharomyces cerevisiae, using an arrayed plasmid library and a high-throughput yeast transformation protocol with a liquid handling robot.

View All Results

FAQs

Related Topics