CIK1: a developmentally regulated spindle pole body-associated protein important for microtubule functions in Saccharomyces cerevisiae.
Open Access
- 1 August 1992
- journal article
- Published by Cold Spring Harbor Laboratory in Genes & Development
- Vol. 6 (8), 1414-1429
- https://doi.org/10.1101/gad.6.8.1414
Abstract
A genetic screen was devised to identify genes important for spindle pole body (SPB) and/or microtubule functions. Four mutants defective in both nuclear fusion (karyogamy) and chromosome maintenance were isolated; these mutants termed cik (for chromosome instability and karyogamy) define three complementation groups. The CIK1 gene was cloned and characterized. Sequence analysis of the CIK1 gene predicts that the CIK1 protein is 594 amino acids in length and possesses a central 300-amino-acid coiled-coil domain. Two different CIK1-beta-galactosidase fusions localize to the SPB region in vegetative cells, and antibodies against the authentic protein detect CIK1 in the SPB region of alpha-factor-treated cells. Evaluation of cells deleted for CIK1 (cik1-delta) indicates that CIK1 is important for the formation or maintenance of a spindle apparatus. Longer and slightly more microtubule bundles are visible in cik1-delta strains than in wild type. Thus, CIK1 encodes a SPB-associated component that is important for proper organization of microtubule arrays and the establishment of a spindle during vegetative growth. Furthermore, the CIK1 gene is essential for karyogamy, and the level of the CIK1 protein at the SPB appears to be dramatically induced by alpha-factor treatment. These results indicate that molecular changes occur at the microtubule-organizing center (MTOC) as the yeast cell prepares for karyogamy and imply that specialization of the MTOC or its associated microtubules occurs in preparation for particular microtubule functions in the yeast life cycle.Keywords
This publication has 54 references indexed in Scilit:
- The NUF1 gene encodes an essential coiled-coil related protein that is a potential component of the yeast nucleoskeleton.The Journal of cell biology, 1992
- Feedback control of mitosis in budding yeastCell, 1991
- S. cerevisiae genes required for cell cycle arrest in response to loss of microtubule functionCell, 1991
- Components of the yeast spindle and spindle pole body.The Journal of cell biology, 1990
- Single-step purification of polypeptides expressed in Escherichia coli as fusions with glutathione S-transferaseGene, 1988
- A chicken-yeast chimeric β-tubulin protein is incorporated into mouse microtubules in vivoCell, 1986
- [12] One-step gene disruption in yeastMethods in Enzymology, 1983
- Decoration of spindle microtubules with Dynein: evidence for uniform polarity.The Journal of cell biology, 1981
- Structural polarity of kinetochore microtubules in PtK1 cells.The Journal of cell biology, 1981
- Analysis of the accuracy and implications of simple methods for predicting the secondary structure of globular proteinsJournal of Molecular Biology, 1978