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Impaired uptake and/or utilisation of leucine is suppressed by the SPT15-300 allele of the TATA binding protein gene.

Appl Environ Microbiol.. 2009-10;  75(19):6055 - 6061
Baerends RJ, Qiu JL, Rasmussen S, Nielsen HB, Brandt A. Carlsberg Laboratory, DK-2500 Copenhagen Valby, Denmark.
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Abstract

Successful fermentations to produce ethanol require microbial strains that have a high tolerance to glucose and ethanol. Enhanced glucose/ethanol tolerance of the laboratory yeast Saccharomyces cerevisiae strain BY4741 under certain growth conditions as a consequence of the expression of a dominant mutant allele of the SPT15 gene (SPT15-300) corresponding to the three amino acid changes F177S, Y195H, and K218R has been reported (H. Alper, J. Moxley, E. Nevoigt, G. R. Fink, and G. Stephanopoulos, Science 314:1565-1568, 2006). The SPT15 gene codes for the TATA-binding protein. This finding prompted us to examine the effect of expression of the SPT15-300 allele in various yeast species of industrial importance. Ex... More

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