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T R Manney

Publications and source records attributed to T R Manney.

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Genetic and biochemical studies of partially active tryptophan synthetase mutants of Saccharomyces cerevisiae.

Approximately 20% of the tryptophan synthetase mutants (tr(5)) of Saccharomyces cerevisiae retain activity in one of the half reactions catalyzed by this enzyme and have been identified as indole-accumulating or indole-utilizing tr(5) mutants by complementation tests. Ten indole-accumulating and six indole-utilizing mutants have been studied. For the half reactions they catalyze, these partially active mutants have from about one-half to twice the specific activities of the wild-type enzyme. Indole-accumulating mutant enzymes showed varying responses to pyridoxal phosphate and serine in the assay mixture. The partially active mutants were further characterized by their patterns of allelic complementation and their distribution on the fine-structure map of the locus. It was concluded that these mutants define two distinct functional regions of the tr(5) locus, corresponding to the two half reactions.

Alleles↗

Regulation of factors that influence the in vitro stability of tryptophan synthetase from yeast.

The activity of tryptophan synthetase in crude extracts from Saccharomyces cerevisiae is stable if the cells are cultured in a complex medium, but extremely unstable if they are cultured in a minimal medium. The difference is not the result of different inherent properties of the enzyme formed in the two cultures. Rather, there are at least two kinds of macromolecular factors that influence the stability, one inactivating tryptophan synthetase and the other protecting against this inactivation. The abundance of these factors varies with the composition of the culture medium, which accounts for the differences observed.

Chemical Precipitation↗

Two mechanisms of allelic complementation among tryptophan synthetase mutants of Saccharomyces cerevisiae.

Two different types of allelic complementation were observed in tryptophan synthetase mutants of the yeast Saccharomyces cerevisiae. Each type is associated with a different mechanism for the enzymatic conversion of indole-3-glycerol phosphate (InGP) to tryptophan. Mechanism I is utilized by a hybrid tryptophan synthetase that resembles, but is not identical with, the wild-type enzyme. Mechanism II is due to a sequential conversion of InGP to free indole, and indole to tryptophan. Two partially active mutant enzymes rather than a single hybrid enzyme catalyze the sequential reaction steps. This is an example of intracellular cross-feeding. The quantitative evaluation of mechanism II leads to the conclusion that tryptophan synthetase in yeast is most likely a dimer of two identical subunits.

Alleles↗