The regulation of cell cycle progression via the attainment of a critical cell size is a conserved feature from simpler unicellular organisms to mammalian cells that is obtaining much attention recently. Genome wide analysis of Saccharomyces cerevisiae deletion strains, genetic epistasis, DNA microarray analysis have recently revealed an increasingly complex network of cell size modulation mechanisms. A systems biology-based approach, that is needed to structure the underlying complexity of cell cycle regulatory mechanisms, is described.

Alberghina, L., Rossi, R., Wanke, V., Querin, L., Vanoni, M. (2003). Checking cell size in budding yeast: a systems biology approach. ITALIAN JOURNAL OF BIOCHEMISTRY, 52(1), 55-57.

Checking cell size in budding yeast: a systems biology approach

ALBERGHINA, LILIA;WANKE, VALERIA;QUERIN, LORENZO;VANONI, MARCO ERCOLE
2003

Abstract

The regulation of cell cycle progression via the attainment of a critical cell size is a conserved feature from simpler unicellular organisms to mammalian cells that is obtaining much attention recently. Genome wide analysis of Saccharomyces cerevisiae deletion strains, genetic epistasis, DNA microarray analysis have recently revealed an increasingly complex network of cell size modulation mechanisms. A systems biology-based approach, that is needed to structure the underlying complexity of cell cycle regulatory mechanisms, is described.
Articolo in rivista - Articolo scientifico
Oligonucleotide Array Sequence Analysis; Saccharomycetales; Models, Biological; Cell Cycle; Gene Deletion
English
2003
52
1
55
57
none
Alberghina, L., Rossi, R., Wanke, V., Querin, L., Vanoni, M. (2003). Checking cell size in budding yeast: a systems biology approach. ITALIAN JOURNAL OF BIOCHEMISTRY, 52(1), 55-57.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/34332
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