Title : Contribution of Are1p and Are2p to steryl ester synthesis in the yeast Saccharomyces cerevisiae.

Pub. Date : 2000 Feb

PMID : 10672016






6 Functional Relationships(s)
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Compound Name
Protein Name
Organism
1 Lipid analysis of are1 and are2 deletion strains revealed that Are2p and Are1p utilize sterol substrates in vivo with different efficiency; Are2p has a significant preference for ergosterol as a substrate, whereas Are1p esterifies sterol precursors, mainly lanosterol, as well as ergosterol. Ergosterol sterol acyltransferase Saccharomyces cerevisiae S288C
2 Lipid analysis of are1 and are2 deletion strains revealed that Are2p and Are1p utilize sterol substrates in vivo with different efficiency; Are2p has a significant preference for ergosterol as a substrate, whereas Are1p esterifies sterol precursors, mainly lanosterol, as well as ergosterol. Ergosterol sterol acyltransferase Saccharomyces cerevisiae S288C
3 Lipid analysis of are1 and are2 deletion strains revealed that Are2p and Are1p utilize sterol substrates in vivo with different efficiency; Are2p has a significant preference for ergosterol as a substrate, whereas Are1p esterifies sterol precursors, mainly lanosterol, as well as ergosterol. Ergosterol sterol acyltransferase Saccharomyces cerevisiae S288C
4 Lipid analysis of are1 and are2 deletion strains revealed that Are2p and Are1p utilize sterol substrates in vivo with different efficiency; Are2p has a significant preference for ergosterol as a substrate, whereas Are1p esterifies sterol precursors, mainly lanosterol, as well as ergosterol. Ergosterol sterol acyltransferase Saccharomyces cerevisiae S288C
5 Lipid analysis of are1 and are2 deletion strains revealed that Are2p and Are1p utilize sterol substrates in vivo with different efficiency; Are2p has a significant preference for ergosterol as a substrate, whereas Are1p esterifies sterol precursors, mainly lanosterol, as well as ergosterol. Ergosterol sterol acyltransferase Saccharomyces cerevisiae S288C
6 Lipid analysis of are1 and are2 deletion strains revealed that Are2p and Are1p utilize sterol substrates in vivo with different efficiency; Are2p has a significant preference for ergosterol as a substrate, whereas Are1p esterifies sterol precursors, mainly lanosterol, as well as ergosterol. Ergosterol sterol acyltransferase Saccharomyces cerevisiae S288C