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Viau CM, et al.  (2012) Enhanced resistance of yeast mutants deficient in low-affinity iron and zinc transporters to stannous-induced toxicity. Chemosphere 86(5):477-84

Abstract: Tin or stannous (Sn(2+)) compounds are used as catalysts, stabilizers in plastic industries, wood preservatives, agricultural biocides and nuclear medicine. In order to verify the Sn(2+) up-take and toxicity in yeast cells we utilized a multi-elemental analysis known as particle-induced X-ray emission (PIXE) along with cell survival assays and quantitative real-time PCR. The detection of Sn(2+) by PIXE was possible only in yeast cells in stationary phase of growth (STAT cells) that survive at 25mM Sn(2+) concentration. Yeast cells in exponential phase of growth (LOG cells) tolerate only micro-molar Sn(2+) concentrations that result in intracellular concentration below of the method detection limit. Our PIXE analysis showed that STAT XV185-14c yeast cells demonstrate a significant loss of intracellular elements such as Mg, Zn, S, Fe and an increase in P levels after 1h exposure to SnCl(2). The survival assay showed enhanced tolerance of LOG yeast cells lacking the low-affinity iron and zinc transporters to stannous treatment, suggesting the possible involvement in Sn(2+) uptake. Moreover, our qRT-PCR data showed that Sn(2+) treatment could generate reactive oxygen species as it induces activation of many stress-response genes, including SOD1, YAP1, and APN1.

Status: Published Type: Journal Article PubMed ID: 22055569

Topics addressed in this paper

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Topics Genes linked to topics (#1 - 10 )
AFT1 APN1 CCH1 CMD1 CRS5 CTR1 CTR2 CTR3 CUP1-1 CUP1-2
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Topics Genes linked to topics (#11 - 20 )
CUP2 FET3 FET4 FRE1 FRE2 GSH1 MAC1 MID1 PMC1 PMR1
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Alias blue ball
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Topics Genes linked to topics (#21 - 28 )
SOD1 SOD2 VCX1 YAP1 YVC1 ZAP1 ZRT1 ZRT2
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Mutants/Phenotypes blue ball blue ball blue ball
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