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Biochemical and genetic analysis of an alpha-mannosidase mutant from Saccharomyces cerevisiae

Author:
Cueva Noval, María Rosario; Bordallo Landa, María del CarmenUniovi authority; Suárez Rendueles, María PazUniovi authority
Publication date:
1990
Publisher version:
http://dx.doi.org/10.1016/0378-1097(90)90430-X
Citación:
FEMS Microbiology Letters , 57 (1-2), p. 153-157 (1990); doi:10.1016/0378-1097(90)90430-X
Descripción física:
p. 153-157
Abstract:

A yeast mutant lacking non-specific α-mannosidase activity was found as a background marker during our search for dap2 mutants (Suárez-Rendueles, P. and Wolf, D.H. (1987) J. Bacteriol. 169, 4041–4048). The mutant (DPS-15) is characterized in detail. The mutation called amd1 segregates 2:2 in meiotic tetrads, indicating a single chromosomal gene mutation which is recessive. Diploids heterozygous for amd1 show gene dosage. Thus, it appears that AMD1 might be the structural gene for α-mannosidase. Results obtained with this mutant show that α-mannosidase is not a vital component of the vegetative cell cycle. The differentiation process of sporulation is not disturbed in homozygous mutant diploids. Mannose turnover does not seem to be altered in mutant cells

A yeast mutant lacking non-specific α-mannosidase activity was found as a background marker during our search for dap2 mutants (Suárez-Rendueles, P. and Wolf, D.H. (1987) J. Bacteriol. 169, 4041–4048). The mutant (DPS-15) is characterized in detail. The mutation called amd1 segregates 2:2 in meiotic tetrads, indicating a single chromosomal gene mutation which is recessive. Diploids heterozygous for amd1 show gene dosage. Thus, it appears that AMD1 might be the structural gene for α-mannosidase. Results obtained with this mutant show that α-mannosidase is not a vital component of the vegetative cell cycle. The differentiation process of sporulation is not disturbed in homozygous mutant diploids. Mannose turnover does not seem to be altered in mutant cells

URI:
http://hdl.handle.net/10651/28932
ISSN:
0378-1097; 1574-6968
DOI:
10.1016/0378-1097(90)90430-X
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