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Svensson JP, et al.  (2011) Genomic phenotyping of the essential and non-essential yeast genome detects novel pathways for alkylation resistance. BMC Syst Biol 5(1):157

Abstract: ABSTRACT: BACKGROUND: A myriad of new chemicals has been introduced into our environment and exposure to these agents can damage cells and induce cytotoxicity through different mechanisms, including damaging DNA directly. Analysis of global transcriptional and phenotypic responses in the yeast S. cerevisiae provides means to identify pathways of damage recovery upon toxic exposure. RESULTS: Here we present a phenotypic screen of S. cerevisiae in liquid culture in a microtiter format. Detailed growth measurements were analyzed to reveal effects on ~5,500 different haploid strains that have either non-essential genes deleted or essential genes modified to generate unstable transcripts. The pattern of yeast mutants that are growth-inhibited (compared to wild type cells) reveals the mechanisms ordinarily used to recover after damage. In addition to identifying previously-described DNA repair and cell cycle checkpoint deficient strains, we also identified new functional groups that profoundly affect MMS sensitivity, including RNA processing and telomere maintenance. CONCLUSIONS: We present here a data-driven method to reveal modes of toxicity of different agents that impair cellular growth. The results from this study complement previous genomic phenotyping studies as we have expanded the data to include essential genes and to provide detailed mutant growth analysis for each individual strain. This eukaryotic testing system could potentially be used to screen compounds for toxicity, to identify mechanisms of toxicity, and to reduce the need for animal testing.

Status: Epub ahead of print Type: Journal Article PubMed ID: 21978764

Topics addressed in this paper

Number of different genes curated to this paper: 65

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Topics Topics not linked to Genes Genes linked to topics (#1 - 10 )
APN1 BRR2 CDC40 CLF1 CWC24 DEF1 EMP24 EST1 LCD1 LSM4
Additional Literature blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball
Function/Process blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball
Large-scale phenotype analysis yg ball
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Topics Genes linked to topics (#11 - 20 )
LSM8 MAG1 MMS2 MSL5 NUP116 NUP49 POL32 POP1 POP4 POP6
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Function/Process blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball
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Topics Genes linked to topics (#21 - 30 )
PRP2 PRP22 PRP24 PRP39 PRP4 PRP40 PRP43 PTA1 RAD14 RAD18
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Function/Process blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball
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Strains/Constructs blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball
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Topics Genes linked to topics (#31 - 40 )
RAD24 RAD26 RAD5 RAD50 RAD51 RAD52 RAD54 RAD57 RAD59 RAD6
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Function/Process blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball
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Topics Genes linked to topics (#41 - 50 )
RAD9 RAP1 RFC1 RFC3 RFC5 RMI1 RNT1 RPR2 SEN15 SEN2
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Topics Genes linked to topics (#51 - 60 )
SGS1 SMX3 SNN1 SNU56 SPB1 SSL1 TAT1 TEL2 TFB1 TLC1
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Function/Process blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball
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Strains/Constructs blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball
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Topics Genes linked to topics (#61 - 65 )
TOP3 UBC13 YHC1 YKU80 YOR331C
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