The CHL 1 (CTF 1) gene product of Saccharomyces cerevisiae is important for chromosome transmission and normal cell cycle progression in G2/M.
- 1 December 1990
- journal article
- Vol. 9 (13) , 4347-58
Abstract
We have analyzed the CTF1 gene, identified in a screen for mutants with decreased chromosome transmission fidelity and shown to correspond to the previously identified chl1 mutation. Chl1 null mutants exhibited a 200-fold increase in the rate of chromosome III missegregation per cell division, and near wild-type rates of marker homozygosis on this chromosome by mitotic recombination. Analysis of the segregation of a marker chromosome indicated that sister chromatid loss (1:0 segregation) and sister chromatid non-disjunction (2:0 segregation) contributed equally to chromosome missegregation. A genomic clone of CHL1 was isolated and used to map its physical position on chromosome XVI. Nucleotide sequence analysis of CHL1 revealed a 2.6 kb open reading frame with a 99 kd predicted protein sequence that contained two PEST sequences and was 23% identical to the coding region of a nucleotide excision repair gene, RAD3. Domains of homology between these two predicted protein sequences included a helix-turn-helix motif and an ATP binding site containing a helicase consensus. Mutants lacking the CHL1 gene product are viable and display two striking, and perhaps interrelated, phenotypes: extreme chromosome instability and a delay in cell cycle progression in G2/M. This delay is independent of the cell cycle checkpoint that requires the function of the RAD9 gene.This publication has 46 references indexed in Scilit:
- Checkpoints: Controls That Ensure the Order of Cell Cycle EventsScience, 1989
- Conservation of mitotic controls in fission and budding yeastsCell, 1989
- Birth of the D-E-A-D boxNature, 1989
- A genetic analysis of dicentric minichromosomes in saccharomyces cerevisiaeCell, 1987
- Amino Acid Sequences Common to Rapidly Degraded Proteins: The PEST HypothesisScience, 1986
- A chicken-yeast chimeric β-tubulin protein is incorporated into mouse microtubules in vivoCell, 1986
- Rapid and Sensitive Protein Similarity SearchesScience, 1985
- Mitotic stability of yeast chromosomes: A colony color assay that measures nondisjunction and chromosome lossCell, 1985
- PROTEIN-DNA RECOGNITIONAnnual Review of Biochemistry, 1984
- Structural rearrangements of tubulin and actin during the cell cycle of the yeast Saccharomyces.The Journal of cell biology, 1984