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Reference - PMID:29294138 - Editor's Highlight: A Genome-wide Screening of Target Genes Against Silver Nanoparticles in Fission Yeast.

Reference summary

PubMed ID
PMID:29294138
Title
Editor's Highlight: A Genome-wide Screening of Target Genes Against Silver Nanoparticles in Fission Yeast.
Authors
Lee AR, Lee SJ, Lee M, Nam M, Lee S, Choi J, Lee HJ, Kim DU, Hoe KL
Citation
Toxicol Sci 2018 Jan 01;161(1):171-185
Publication year
2018
Abstract
To identify target genes against silver nanoparticles (AgNPs), we screened a genome-wide gene deletion library of 4843 fission yeast heterozygous mutants covering 96% of all protein encoding genes. A total of 33 targets were identified by a microarray and subsequent individual confirmation. The target pattern of AgNPs was more similar to those of AgNO3 and H2O2, followed by Cd and As. The toxic effect of AgNPs on fission yeast was attributed to the intracellular uptake of AgNPs, followed by the subsequent release of Ag+, leading to the generation of reactive oxygen species (ROS). Next, we focused on the top 10 sensitive targets for further studies. As described previously, 7 nonessential targets were associated with detoxification of ROS, because their heterozygous mutants showed elevated ROS levels. Three novel essential targets were related to folate metabolism or cellular component organization, resulting in cell cycle arrest and no induction in the transcriptional level of antioxidant enzymes such as Sod1 and Gpx1 when 1 of the 2 copies was deleted. Intriguingly, met9 played a key role in combating AgNP-induced ROS generation via NADPH production and was also conserved in a human cell line.

Annotation

Single locus phenotype

FYPO:0000400 - abnormal cell cycle arrest at mitotic G2/M phase transition

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FYPO:0003004 - increased cellular reactive oxygen species level during vegetative growth

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FYPO:0003510 - normal growth on silver ions

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FYPO:0000750 - sensitive to silver ions

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FYPO:0006929 - sensitive to silver nanoparticles

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FYPO:0001492 - viable elongated vegetative cell

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