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M J LEWIS

Publications and source records attributed to M J LEWIS.

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RELEASE OF NITROGENOUS SUBSTANCES BY BREWER'S YEAST. IV. ENERGETICS IN SHOCK EXCRETION OF AMINO ACIDS.

Lewis, M. J. (University of California, Davis), and H. J. Phaff. Release of nitrogenous substances by brewer's yeast. IV. Energetics in shock excretion of amino acids. J. Bacteriol. 89:960-966. 1965.-When suitably grown yeast cells are suspended in a solution of fermentable sugar, amino acids from the internal pool are rapidly released from the cells, a phenomenon referred to as shock excretion. After approximately 2 to 3 hr, in the presence of excess sugar, the amino acids are almost completely reabsorbed. This observation has been further studied with particular reference to the energy-yielding reactions of the cell. It has been established that amino acid release increases more rapidly with a rise in incubation temperature than does fermentation rate. Amino acid release cannot be inhibited by the common uncouplers of adenosine triphosphate synthesis (azide, arsenate, or 2,4-dinitrophenol) at concentrations adequate to prevent reabsorption of amino acids-an energy-requiring event. Inhibitors which completely inhibit the dissimilation of glucose (such as iodoacetate and fluoride) or those preventing entry of glucose into the cell (uranyl acetate) are effective in preventing amino acid release. It was concluded that shock excretion of amino acids is independent of energy-yielding reactions, but may be the result of changes in the state of the cell contingent upon the continuous flow of a fermentable sugar across the cell membrane.

2,4-Dinitrophenol↗

RELEASE OF INTROGENOUS SUBSTANCES BY BREWER'S YEAST. 3. SHOCK EXCRETION OF AMINO ACIDS.

Lewis, M. J. (University of California, Davis), and H. J. Phaff. Release of nitrogenous substances by brewers' yeast. III. Shock excretion of amino acids. J. Bacteriol. 87:1389-1396. 1964.-When Saccharomyces carlsbergensis (two strains) and S. cerevisiae (one strain) were grown in static culture and the harvested, washed cells were suspended in a solution of glucose, amino acids were suddenly released and then rapidly reabsorbed in a space of about 2 hr. The phenomenon of amino acid release, which was termed shock excretion, varied in intensity with the strain of yeast and was shown to be dependent on the size of the pool of free amino acids within the cells. Shock excretion was independent of osmotic pressure of the suspending medium, but required the presence of a fermentable sugar. d-Galactose and maltose caused shock excretion only when yeast was previously adapted to these sugars. Limiting glucose concentrations prevented reabsorption of amino acids, and a further decrease in glucose concentration also limited excretion. Shock excretion was strikingly reduced when the temperature of the suspending medium was lowered.

Amino Acids↗