Abstract
The properties of a specific system for the transport of S-adenosylmethionine in yeast are described. The process was pH-, temperature-, and energy-dependent, and showed saturation kinetics. The K(m) for the system was 3.3 x 10(-6)m. Of the S-adenosylmethionine moieties tested, only S-adenosylhomocysteine competitively inhibited the uptake of the adenosylsulfonium compound. Adenine, adenosine, methionine, homocysteine, and the sulfonium compound S-methylmethionine were without effect. The analogue S-adenosylethionine showed competitive inhibition. Under conditions of inhibition of protein synthesis by cycloheximide or methionine starvation, permease activity was stable. The mutant sam-p3 apparently was able to transport S-adenosylmethionine only by diffusion. Uptake by diploids containing this mutation was directly proportional to the gene dose.
MeSH Terms
Adenosine/metabolism
Azides/pharmacology
Biological Transport, Active
Carbon Isotopes
Chromatography, Paper
Culture Media
Cyanides/pharmacology
Cycloheximide/pharmacology
Diploidy
Ethionine/pharmacology
Genes
Genetics, Microbial
Homocysteine/pharmacology
Hydrogen-Ion Concentration
Kinetics
Membrane Transport Proteins/metabolism
Methionine/metabolism
Mutation
S-Adenosylmethionine/metabolism
Saccharomyces/metabolism
Saccharomyces cerevisiae/enzymology,growth & development,metabolism
Temperature
Chemicals
Azides
Carbon Isotopes
Culture Media
Cyanides
Membrane Transport Proteins
Homocysteine
S-Adenosylmethionine
Cycloheximide
Methionine
Adenosine
Ethionine
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Murphy J T
Spence K D
References (13)
13 references, click to expand
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