A mutation in CSE4, an essential gene encoding a novel chromatin-associated protein in yeast, causes chromosome nondisjunction and cell cycle arrest at mitosis.
Open Access
- 1 March 1995
- journal article
- Published by Cold Spring Harbor Laboratory in Genes & Development
- Vol. 9 (5) , 573-586
- https://doi.org/10.1101/gad.9.5.573
Abstract
The centromere, a differentiated region of the eukaryotic chromosome, mediates the segregation of sister chromatids at mitosis. In this study, a Saccharomyces cerevisiae chromosome mis-segregation mutant, cse4-1, has been isolated and shown to increase the nondisjunction frequency of a chromosome bearing a mutant centromere DNA sequence. In addition, at elevated temperatures the cse4-1 allele causes a mitosis-specific arrest with a predominance of large budded cells containing single G2 nuclei and short bipolar mitotic spindles. The wild-type gene, CSE4, is essential for cell division and encodes a protein containing a domain that is 64% identical to the highly conserved chromatin protein, histone H3. Biochemical experiments demonstrate that CSE4p has similar DNA-binding characteristics as those of histone H3 and might form a specialized nucleosome structure in vivo. Interestingly, the human centromere protein, CENP-A, also contains this H3-like domain. Data presented here indicate that CSE4p is required for proper kinetochore function in yeast and may represent an evolutionarily conserved protein necessary for assembly of the unique chromatin structure associated with the eukaryotic centromere.Keywords
This publication has 46 references indexed in Scilit:
- A ten-minute DNA preparation from yeast efficiently releases autonomous plasmids for transformaion of Escherichia coliPublished by Elsevier ,2003
- Mitosis: Back to the basicsCell, 1994
- 2.2 Mb of contiguous nucleotide sequence from chromosome III of C. elegansNature, 1994
- NDC10: a gene involved in chromosome segregation in Saccharomyces cerevisiae.The Journal of cell biology, 1993
- Centromere and kinetochore structureCurrent Opinion in Cell Biology, 1992
- A general approach to the isolation of cell cycle-regulated genes in the budding yeast, Saccharomyces cerevisiaeJournal of Molecular Biology, 1991
- Nuclear targeting sequences — a consensus?Trends in Biochemical Sciences, 1991
- A positive selection for mutants lacking orotidine-5′-phosphate decarboxylase activity in yeast: 5-fluoro-orotic acid resistanceMolecular Genetics and Genomics, 1984
- Chromatin conformation of yeast centromeres.The Journal of cell biology, 1984
- [12] One-step gene disruption in yeastPublished by Elsevier ,1983