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Iwahashi Y, et al.  (2006) Mechanisms of patulin toxicity under conditions that inhibit yeast growth. J Agric Food Chem 54(5):1936-42

Abstract: Patulin, 4-hydroxy-4H-furo[3,2c]pyran-2(6H)-one, is one of the best characterized and most widely disseminated mycotoxins found in agricultural products. Nonetheless, the mechanisms by which patulin causes toxicity are not well understood. Thus, the cytotoxicity of patulin was characterized by analysis of the yeast transcriptome upon challenge with patulin. Interestingly, patulin-induced yeast gene expression profiles were found to be similar to gene expression patterns obtained after treatment with the antifungal agricultural chemicals thiuram, maneb, and zineb. Moreover, patulin treatment was found to activate protein degradation, especially proteasome activities, sulfur amino acid metabolism, and the defense system for oxidative stress. Damage to DNA by alkylation was also suggested, and this seemed to be repaired by recombinational and excision repair mechanisms. Furthermore, the results provide potential biomarker genes for the detection of patulin in agricultural products. The results suggest the possibility of applying the yeast transcriptome system for the evaluation of chemicals, especially for natural chemicals that are difficult to get by organic synthesis.

Status: Published Type: Journal Article PubMed ID: 16506856

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AAD4 AAD6 DDI1 DEF1 ECM4 FLR1 FRM2 GTT2 MAG1 MAG2
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Genomic expression study yg ball
Infection and Antifungals yg ball
Omics yg ball
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MET17 MGT1 MIG3 NCA3 NTG1 OYE3 PTC2 RAD14 RAD16 RAD23
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Topics Genes linked to topics (#21 - 30 )
RAD50 RAD52 RAD54 RAD59 RAD7 RDH54 RFA1 SML1 SPS100 TOP3
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Topics Genes linked to topics (#31 - 38 )
UFO1 YCR102C YDL218W YJL045W YKL070W YKL071W YLL056C YLR460C
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