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Polymorphism of human mu class glutathione transferases

dc.contributor.authorTetlow, Natasha
dc.contributor.authorRobinson, Anna
dc.contributor.authorMantle, Tim
dc.contributor.authorBoard, Philip
dc.date.accessioned2015-12-13T23:07:38Z
dc.date.available2015-12-13T23:07:38Z
dc.date.issued2004
dc.date.updated2015-12-12T08:10:05Z
dc.description.abstractObjectives and methods: A combined database mining approach was used to detect polymorphisms in the mu class glutathione-S-transferase (GST) genes. Although a large number of potential polymorphisms were detected in the five genes that comprise the Mu class GSTs using sequence alignment programs and by searching single nucleotide polymorphism databases, the majority were not validated or detected in three major ethnic populations (African, Southern Chinese and Australian European). Results: Two new polymorphisms were detected and characterized in the GSTM3 gene. A rare pG147W substitution was detected only in the Southern Chinese subjects. A more common pV224I substitution was found in each of the ethnic groups studied, and significant differences in allele frequencies were observed between each group. These two polymorphisms can combine to form four distinct haplotypes (GSTM3A [p.G147;V224], GSTM3C [p.G147;I224], GSTM3D [p.W147;V224], GSTM3E [p.W147;I224]). The four isoforms were expressed in Escherichia coli and characterized enzymatically with several substrates including 1-chloro-2,4-dinitrobenzene (CDNB), cumene hydroperoxide and t-nonenal. GSTM3-3 containing the variant p.W147 residue tended to show diminished specific activity and catalytic efficiency with CDNB. In contrast, GSTM3-3 containing the variant p.I224 residue tended to show increased specific activity and catalytic efficiency with CDNB. Interactions between the different p.147 and p.224 residues were also observed, with the GSTM3C isoform exhibiting the greatest activity with each substrate, and GSTM3E the lowest Conclusion: These functional polymorphisms may play a significant role in modulating the ability of GSTM3-3 to metabolize substrates such as the chemotherapeutic agent 1,3-bis(2-chloroethyl)-1-nitrosourea.
dc.identifier.issn1744-6872
dc.identifier.urihttp://hdl.handle.net/1885/86298
dc.publisherLippincott Williams & Wilkins
dc.sourcePharmacogenetics and Genomics
dc.subjectKeywords: 1 chloro 2,4 dinitrobenzene; chemical compound; cumene hydroperoxide; glutathione transferase; glutathione transferase mu 3 3 protein; glutathione transferase mu 3a protein; glutathione transferase mu 3c protein; glutathione transferase mu 3d protein; glu EST; Glutathione; Polymorphism; Transferases
dc.titlePolymorphism of human mu class glutathione transferases
dc.typeJournal article
local.bibliographicCitation.lastpage368
local.bibliographicCitation.startpage359
local.contributor.affiliationTetlow, Natasha, College of Medicine, Biology and Environment, ANU
local.contributor.affiliationRobinson, Anna, College of Medicine, Biology and Environment, ANU
local.contributor.affiliationMantle, Tim, University of Dublin
local.contributor.affiliationBoard, Philip, College of Medicine, Biology and Environment, ANU
local.contributor.authoruidTetlow, Natasha, u9718329
local.contributor.authoruidRobinson, Anna, u4024790
local.contributor.authoruidBoard, Philip, u7701651
local.description.notesImported from ARIES
local.description.refereedYes
local.identifier.absfor111599 - Pharmacology and Pharmaceutical Sciences not elsewhere classified
local.identifier.ariespublicationMigratedxPub15126
local.identifier.citationvolume14
local.identifier.doi10.1097/00008571-200406000-00005
local.identifier.scopusID2-s2.0-3042600930
local.type.statusPublished Version

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