Unknown,Transcriptomics,Genomics,Proteomics

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Deletion mutant analysis of established glucose signaling and metabolic pathway members in Saccharomyces cerevisiae


ABSTRACT: To understand the organisation of the glucose regulatory system, we analysed 91 deletion mutants of established glucose signalling and metabolic pathway members in Saccharomyces cerevisiae by DNA microarrays. These deletion mutants do not induce pathway-specific transcriptional responses reflecting the tight interconnection between pathways of the glucose regulatory system. Instead, one main transcriptional response is discerned, which varies in direction to mimic either a high or a low glucose response. The study reveals both known and unknown relationships within and between individual pathways and their members. Metabolic components of the glucose regulatory system are most frequently affected at the transcriptional level. A new network approach is applied that exposes the hierarchical organisation of the glucose regulatory system. Tps2 and Tsl1, two enzymes involved in trehalose biosynthesis, are predicted to be the most downstream transcriptional components. This prediction is further validated by epistasis analysis of Tps2 double mutants. Taken together, this suggests that changes in perceived glucose levels ultimately lead to a shift in trehalose biosynthesis. RNA isolated from a large amount of wt yeast from a single culture was used as a common reference. This common reference was used for each separate hybridization and used in the statistical analysis to obtain an average expression-profile for each deletion mutant relative to the wt. Two independent cultures were hybridized on two separate microarrays. For the first hybridization the Cy5 (red) labeled cRNA from the deletion mutant is hybridized together with the Cy3 (green) labeled cRNA from the common reference. For the replicate hybridization, the labels are swapped. Each gene is represented twice on the microarray, resulting in four measurements per mutant. Up to five deletion strains were grown on a single day. Wt cultures were grown parallel to the deletion mutants to assess day-to-day variance.

ORGANISM(S): Saccharomyces cerevisiae

SUBMITTER: Patrick Kemmeren 

PROVIDER: E-GEOD-33097 | biostudies-arrayexpress |

REPOSITORIES: biostudies-arrayexpress

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Publications

Yeast glucose pathways converge on the transcriptional regulation of trehalose biosynthesis.

Apweiler Eva E   Sameith Katrin K   Margaritis Thanasis T   Brabers Nathalie N   van de Pasch Loes L   Bakker Linda V LV   van Leenen Dik D   Holstege Frank Cp FC   Kemmeren Patrick P  

BMC genomics 20120614


<h4>Background</h4>Cellular glucose availability is crucial for the functioning of most biological processes. Our understanding of the glucose regulatory system has been greatly advanced by studying the model organism Saccharomyces cerevisiae, but many aspects of this system remain elusive. To understand the organisation of the glucose regulatory system, we analysed 91 deletion mutants of the different glucose signalling and metabolic pathways in Saccharomyces cerevisiae using DNA microarrays.<h  ...[more]

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