glutathione s transferase principle S-transferase π: a potential role in antitumor therapy | DDDT The role of glutathione S-transferases
Description
10.1146/annurev-pharmtox-011613-135959

In PM plate 25D well G4 containing 5-fluorocytosine, the wildtype and sam1/sam1 mutant cells grew similarly, beginning to grow before the 24-hour timepoint and starting to level off after 48-hours

doi: 10.3389/fpls.2023.1097158 102 MagarN

For example, in HCC mouse models, stigmasterol remodels gut microbiota, increases Lactobacillus abundance, leads to a decrease in the proportion of regulatory T cells (Tregs) in the tumor microenvironment, and simultaneously increases the proportion of IFN- + CD8 + T cells with killing function, thereby enhancing antitumor immunity
*Genealogy and Human Health*, 2013

It also operates as an essential cofactor for various enzymes and plays a pivotal role in several important metabolic functions 3,4,5 including: Biochemical foundation of P450 enzyme detoxification in the liver, lungs, kidney and intestinal epithelia Participates in converting drugs and other toxic chemicals more water-soluble for easier excretion Participating in antioxidant defence systems Protection against free radicals Primary protectant of lens, cornea, skin and retina against radiation damage Regulating and maintaining cellular redox balance Helping metabolise oestrogens and inflammatory compounds Storing and transporting nitric oxide Storing cysteine reserves Regulating the function of proteins Involvement in DNA synthesis Participating in iron and copper transfer Glutathione tends to be found in high concentrations in all cells of the human body, particularly the liver
