Unknown,Transcriptomics,Genomics,Proteomics

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Yeast W303 SSD1-V cell cycle


ABSTRACT: SSD1 is a polymorphic locus in budding yeast with many pleiotropic effects. Our lab had previously done transcript microarray of W303a in an ssd1-d background, and here we have carried out another transcript microarray across the cell cycle in an isogenic SSD1-V background. We find that a large fraction of budding yeast transcripts is differentially expressed in these cells. Ssd1 has recently been shown to bind mRNAs in vivo, but very few of these mRNAs show significant changes in levels in the SSD1-V versus ssd1-d comparison. About 20% of cell cycle-regulated transcripts are affected by SSD1-V and most of these transcripts show sharper amplitudes of oscillation in SSD1-V cells. Many transcripts whose gene products influence longevity are also affected, the largest class of which are involved in translation. Ribosomal protein mRNAs are globally down-regulated by SSD1-V. Cells were synchronized with alpha factor and sampled every 10 min across 2 cell cycles. A total of 13 samples were analyzed. No replicates were included. cDNA of the cell cycle samples were labelled with Cy5. For Cy3 labelling, asynchronous yeast population was used.

ORGANISM(S): Saccharomyces cerevisiae

SUBMITTER: Linda Breeden 

PROVIDER: E-GEOD-16911 | biostudies-arrayexpress |

REPOSITORIES: biostudies-arrayexpress

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Publications

Budding yeast SSD1-V regulates transcript levels of many longevity genes and extends chronological life span in purified quiescent cells.

Li Lihong L   Lu Yong Y   Qin Li-Xuan LX   Bar-Joseph Ziv Z   Werner-Washburne Margaret M   Breeden Linda L LL  

Molecular biology of the cell 20090701 17


Ssd1 is an RNA-binding protein that affects literally hundreds of different processes and is polymorphic in both wild and lab yeast strains. We have used transcript microarrays to compare mRNA levels in an isogenic pair of mutant (ssd1-d) and wild-type (SSD1-V) cells across the cell cycle. We find that 15% of transcripts are differentially expressed, but there is no correlation with those mRNAs bound by Ssd1. About 20% of cell cycle regulated transcripts are affected, and most show sharper ampli  ...[more]

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