A Genomic Approach for the Identification and Classification of Genes Involved in Cell Wall Formation and Its Regulation inSaccharomyces cerevisiae

Author:

de Groot Piet W. J.1,Ruiz Cristina2,Vázquez de Aldana Carlos R.3,Duenas Encarnación3,Cid Víctor J.2,Del Rey Francisco3,Rodríquez-Peña José M.2,Pérez Pilar3,Andel Annemiek1,Caubín Julio2,Arroyo Javier2,García Juan C.3,Gil Concha2,Molina María2,García Luis J.3,Nombela César2,Klis Frans M.1

Affiliation:

1. Swammerdam Institute for Life Sciences, University of Amsterdam, Nieuwe Achtergracht 166, Amsterdam, WV 1018, The Netherlands

2. Departamento de Microbiologia II, Facultad de Farmacia, Universidad Complutense, Ciudad Universitaria, Madrid E-28040, Spain

3. Instituto de Microbiología Bioquímica, Departamento de Microbiología y Genética, CSIC/Universidad de Salamanca, Campus Miguel de Unamuno, Salamanca E-37007, Spain

Abstract

Using a hierarchical approach, 620 non-essential single-gene yeast deletants generated by EUROFAN I were systematically screened for cell-wall-related phenotypes. By analyzing for altered sensitivity to the presence of Calcofluor white or SDS in the growth medium, altered sensitivity to sonication, or abnormal morphology, 145 (23%) mutants showing at least one cell wall-related phenotype were selected. These were screened further to identify genes potentially involved in either the biosynthesis, remodeling or coupling of cell wall macromolecules or genes involved in the overall regulation of cell wall construction and to eliminate those genes with a more general, pleiotropic effect. Ninety percent of the mutants selected from the primary tests showed additional cell wall-related phenotypes. When extrapolated to the entire yeast genome, these data indicate that over 1200 genes may directly or indirectly affect cell wall formation and its regulation. Twenty-one mutants with altered levels ofβ1,3-glucan synthase activity and five Calcofluor white-resistant mutants with altered levels of chitin synthase activities were found, indicating that the corresponding genes affectβ1,3-glucan or chitin synthesis. By selecting for increased levels of specific cell wall components in the growth medium, we identified 13 genes that are possibly implicated in different steps of cell wall assembly. Furthermore, 14 mutants showed a constitutive activation of the cell wall integrity pathway, suggesting that they participate in the modulation of the pathway either directly acting as signaling components or by triggering the Slt2-dependent compensatory mechanism. In conclusion, our screening approach represents a comprehensive functional analysis on a genomic scale of gene products involved in various aspects of fungal cell wall formation.

Funder

Comisión Interministerial de Ciencia y Tecnología

Publisher

Hindawi Limited

Subject

Genetics,Molecular Biology,Biotechnology

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