Lithium Acetate Transformation

Lithium acetate transformation is a laboratory method for introducing exogenous DNA into yeast cells, enabling researchers to modify their genetic material and study gene function. In this process, lithium acetate helps increase cell-wall and membrane permeability, while polyethylene glycol promotes contact between DNA and the cell surface; a heat-shock step can further support DNA uptake, followed by selection of successfully transformed cells. The method provides a practical route for generating engineered yeast strains used to express proteins, investigate cellular responses, and develop experimental systems relevant to immunology and infection research. Its simplicity and adaptability make it valuable for routine molecular genetics.

Lithium Acetate Transformation - Related Videos

Education

JoVE Science Education - Basic Biology

Yeast Transformation and Cloning

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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 Journal - Biology

Direct Detection of the Acetate-forming Activity of the Enzyme Acetate Kinase

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Cited by 11 •

2011

A method for the determination of acetate kinase activity is described. This assay utilizes a direct reaction for determining enzyme activity and kinetics of acetate kinase in the acetate-forming direction with different phosphoryl acceptors. Furthermore, this method can be utilized for assaying other acetyl phosphate or acetyl-CoA utilizing enzymes.

Construction and Testing of Coin Cells of Lithium Ion Batteries

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Cited by 13 •

2012

A protocol to construct and test coin cells of lithium ion batteries is described. The specific procedures of making a working electrode, preparing a counter electrode, assembling a cell inside a glovebox and testing the cell are presented.

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

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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.

In Situ Neutron Powder Diffraction Using Custom-made Lithium-ion Batteries

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Cited by 7 •

2014

We describe the design and construction of an electrochemical cell for the examination of electrode materials using in situ neutron powder diffraction (NPD). We briefly comment on alternate in situ NPD cell designs and discuss methods for the analysis of the corresponding in situ NPD data produced using this cell.

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