Lithium acetate

 
National Institutes of Health

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Highly Cited
2010
Highly Cited
2010
Antibody library selection by yeast display technology is an efficient and highly sensitive method to identify binders to target… (More)
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Highly Cited
2007
Highly Cited
2007
Here we describe a high-efficiency version of the lithium acetate/single-stranded carrier DNA/PEG method of transformation of… (More)
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Highly Cited
2007
Highly Cited
2007
Here, we describe a quick and easy version of the lithium acetate/single-stranded carrier DNA/PEG method of transformation for… (More)
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Highly Cited
2007
Highly Cited
2007
Here we describe a protocol for the production of frozen competent yeast cells that can be transformed with high efficiency using… (More)
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Highly Cited
2004
Highly Cited
2004
Transformation efficiencies for Pichia pastoris are usually several orders of magnitude below those for other yeast. We report… (More)
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Highly Cited
2003
Highly Cited
2003
Commonly used protocols for the transformation of the dimorphic human fungal pathogen Candida albicans rely on established… (More)
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Highly Cited
2002
Highly Cited
2002
In this chapter we have provided instructions for transforming yeast by a number of variations of the LiAc/SS-DNA/PEG method for… (More)
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Highly Cited
1995
Highly Cited
1995
An improved lithium acetate (LiAc)/single-stranded DNA (SS-DNA)/polyethylene glycol (PEG) protocol which yields > 1 x 10(6… (More)
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Highly Cited
1993
Highly Cited
1993
We have compared a number of procedures for the transformation of whole cells of the yeast Saccharomyces cerevisiae and assessed… (More)
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Highly Cited
1991
Highly Cited
1991
The highly efficient yeast lithium acetate transformation protocol of Schiestl and Gietz (1989) was tested for its applicability… (More)
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