>Filamentous growth of the budding yeast Saccharomyces cerevisiae induced by overexpression of the WH12 gene
- 1 June 1997
- journal article
- Published by Microbiology Society in Microbiology
- Vol. 143 (6) , 1867-1876
- https://doi.org/10.1099/00221287-143-6-1867
Abstract
The WH12 gene of the budding yeast Saccharomyces cerevisiae is required for the arrest of cell proliferation upon nutrient exhaustion: whi2 mutants carry on dividing and in the absence of growth become abnormally SmaIl. It is reported here that overexpression of Whi2 from the GAL1 promoter results in filamentous growth - cells fail to complete cytokinesis, the budding pattern changes from axial to polar, cells become elongated and cell size increases threefold. In many ways, these filaments resemble the pseudohyphae which result from nitrogen-limited growth and the filaments seen during the invasive growth of haploids. However, Whi2-induced filament formation is reduced, but not blocked, by mutations in STE7, STE12 or STE20 which do block pseudohypha formation. Furthermore, pseudohypha formation can still occur in a diploid in which both copies of the WH12 gene have been deleted. Thus Whi2-induced filament formation and pseudohypha formation must come about through the action of different pathways. Despite this, a mutation in the STE11 gene, which is required for pseudohypha formation, does block Whi2-induced filament formation. Concanavalin A pulse-chase experiments show that new cell wall material is incorporated only into the tips of the apical cells. An extragenic suppressor of the whi2 allele also results in filamentous growth. These results suggest that Whi2 negatively regulates a function required for the budding mode of cell proliferation including cytokinesis. This function is defined wholly or in part by the fswl allele.Keywords
This publication has 27 references indexed in Scilit:
- Bud10p directs axial cell polarization in budding yeast and resembles a transmembrane receptorCurrent Biology, 1996
- Ste20-like protein kinases are required for normal localization of cell growth and for cytokinesis in budding yeast.Genes & Development, 1995
- Patterns of bud-site selection in the yeast Saccharomyces cerevisiae.The Journal of cell biology, 1995
- Stress resistance of yeast cells is largely independent of cell cycle phaseYeast, 1993
- The Logic of Cell Division in the Life Cycle of YeastScience, 1992
- Unipolar cell divisions in the yeast S. cerevisiae lead to filamentous growth: Regulation by starvation and RASCell, 1992
- Genetic control of bud site selection in yeast by a set of gene products that constitute a morphogenetic pathwayPublished by Elsevier ,1991
- Yeast BUD5, encoding a putative GDP-GTP exchange factor, is necessary for bud site selection and interacts with bud formation gene BEM1Cell, 1991
- Multicopy suppression of the cdc24 budding defect in yeast by CDC42 and three newly identified genes including the ras-related gene RSR1.Proceedings of the National Academy of Sciences, 1989
- Relationship of actin and tubulin distribution to bud growth in wild-type and morphogenetic-mutant Saccharomyces cerevisiae.The Journal of cell biology, 1984