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glutathione formaldehyde dehydrogenase The proposed glutathione-dependent mechanism of 3HP detoxification. Red Emerging mechanisms underlying formaldehyde toxicity

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Finally, phylogenetic analysis using the nrDNA ITS region also placed K51 and K52 in a strongly supported clade ( 84% PhyML bootstrap and 95% Bayesian posterior probability support) with M

glutathione formaldehyde dehydrogenase The proposed glutathione-dependent mechanism of 3HP detoxification. Red Emerging mechanisms underlying formaldehyde toxicity

As expected by the increased striatal DA, pathways signifying activation of signalling by G-protein-coupled receptors, transmission across chemical synapses and calcium signalling were all positively enriched at 3 months in iSPN + mut (Supplementary Table 1a), whereas genes associated with metabolic pathways such as oxidative phosphorylation (OxPhos) and respiratory electron transport ATP synthesis were significantly downregulated in iSPN + mut compared to iSPN+wt at 3 months (Fig

glutathione formaldehyde dehydrogenase The proposed glutathione-dependent mechanism of 3HP detoxification. Red Emerging mechanisms underlying formaldehyde toxicity

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glutathione formaldehyde dehydrogenase The proposed glutathione-dependent mechanism of 3HP detoxification. Red Emerging mechanisms underlying formaldehyde toxicity

Activation of benznidazole by trypanosomal type I nitroreductases results in glyoxal formation

glutathione formaldehyde dehydrogenase The proposed glutathione-dependent mechanism of 3HP detoxification. Red Emerging mechanisms underlying formaldehyde toxicity

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