Mutational analysis of theSaccharomyces cerevisiaegeneral regulatory factor CP1
Open Access
- 1 January 1993
- journal article
- Published by Oxford University Press (OUP) in Nucleic Acids Research
- Vol. 21 (17) , 4133-4141
- https://doi.org/10.1093/nar/21.17.4133
Abstract
The Saccharomyces cerevisiae general regulatory factor CP1, a helix-loop-helix protein that binds the centromere DNA element I (CDEI) of yeast centromeres, is required in yeast for optimal centromere function and for methionine prototrophy. Mutant alleles of CEP1, the gene encoding CP1, were generated by linker Insertion, 5'- and 3'-deletion, and random mutagenesis and assayed for DNA binding activity and their ability to confer CP1 function when expressed in yeast. A heterologous CDEI-binding protein, TFEB, was also tested for CP1 function. The results suggested that DNA binding is required for both biological functions of CP1 but is not sufficient. A direct and quantitative correlation was observed between the chromosome loss and nutritional (I.e., Met) phenotypes of strains carrying loss of function alleles, but qualitatively the chromosome loss phenotype was more sensitive to decreased CP1 expression. The data are consistent with a model in which CP1 performs the same general chromatin-related function at centromeres and MET gene promoters and is normally present in functional excess.Keywords
This publication has 26 references indexed in Scilit:
- Microtubule-motor activity of a yeast centromere-binding protein complexNature, 1992
- A 240 kd multisubunit protein complex, CBF3, is a major component of the budding yeast centromerePublished by Elsevier ,1991
- Yeast centromere binding protein CBF1, of the helix-loop-helix protein family, is required for chromosome stability and methionine prototrophyCell, 1990
- Transcriptional regulation by dimerization: Two sides to an incestuous relationshipCell, 1990
- A yeast protein that influences the chromatin structure of UASG and functions as a powerful auxiliary gene activator.Genes & Development, 1990
- High efficiency transformation of intact yeast cells using single stranded nucleic acids as a carrierCurrent Genetics, 1989
- Function of the PHO regulatory genes for repressible acid phosphatase synthesis in Saccharomyces cerevisiaeMolecular Genetics and Genomics, 1989
- Statistical positioning of nucleosomes by specific protein-binding to an upstream activating sequence in yeastJournal of Molecular Biology, 1988
- [22] Visual assay for chromosome ploidyPublished by Elsevier ,1987
- A Rapid and Sensitive Method for the Quantitation of Microgram Quantities of Protein Utilizing the Principle of Protein-Dye BindingAnalytical Biochemistry, 1976