Editorial: Plant Glutathione Transferases: Diverse, Multi-Tasking Enzymes With Yet-to-Be Discovered Functions. [PDF]
Csiszár J +4 more
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Genome wide identification and comparative analysis of glutathione transferases (GST) family genes in Brassica napus. [PDF]
Wei L +8 more
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Protein-Ligand Fishing <i>in planta</i> for Biologically Active Natural Products Using Glutathione Transferases. [PDF]
Dixon DP, Edwards R.
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Glutathione transferases: substrates, inihibitors and pro-drugs in cancer and neurodegenerative diseases. [PDF]
Allocati N +3 more
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Structure-Guided Mechanisms Behind the Metabolism of 2,4,6-Trinitrotoluene by Glutathione Transferases U25 and U24 That Lead to Alternate Product Distribution. [PDF]
Tzafestas K +5 more
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Characterization of glutathione transferases involved in the pathogenicity of Alternaria brassicicola. [PDF]
Calmes B +6 more
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Prediction of substrates for glutathione transferases by covalent docking. [PDF]
Dong GQ +11 more
europepmc +1 more source
Glutathione Transferases Superfamily: Cold-Inducible Expression of Distinct GST Genes in Brassica oleracea. [PDF]
Vijayakumar H +8 more
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Mechanisms of insecticide resistance in mosquitoes: A systematic review of biochemical and physiological perspectives for sustainable vector control. [PDF]
Abbasi E.
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▪ Abstract This review describes the three mammalian glutathione transferase (GST) families, namely cytosolic, mitochondrial, and microsomal GST, the latter now designated MAPEG. Besides detoxifying electrophilic xenobiotics, such as chemical carcinogens, environmental pollutants, and antitumor agents, these transferases inactivate endogenous α,β ...
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