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glutathione and oxalates Oxalate in Plants: Metabolism, Function, Regulation, Application Oxalate induces mitochondrial dysfunction and

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mtDNA is 10 times more vulnerable to mutations and oxidative stress than nDNA due to a lack of histones protection, fewer repair enzymes, and increased susceptibility to supercoiling damage [94]

glutathione and oxalates Oxalate in Plants: Metabolism, Function, Regulation, Application Oxalate induces mitochondrial dysfunction and

An alternative is to develop substances that are safer for the epithelial barrier and are substitutes for commonly used, dangerous compounds [1]

glutathione and oxalates Oxalate in Plants: Metabolism, Function, Regulation, Application Oxalate induces mitochondrial dysfunction and

Bonilla-Petriciolet, H

glutathione and oxalates Oxalate in Plants: Metabolism, Function, Regulation, Application Oxalate induces mitochondrial dysfunction and

Additionally, GGCT mutants reversed this alteration, restoring [U- 13 C]-labeling of TCA metabolites and GSH

glutathione and oxalates Oxalate in Plants: Metabolism, Function, Regulation, Application Oxalate induces mitochondrial dysfunction and

T ngy th 16: S dng 3 vin/ngy

glutathione and oxalates Oxalate in Plants: Metabolism, Function, Regulation, Application Oxalate induces mitochondrial dysfunction and

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