Publication | Open Access
<i>DHFR/MSH3</i> amplification in methotrexate-resistant cells alters the hMutSα/hMutSβ ratio and reduces the efficiency of base–base mismatch repair
158
Citations
38
References
1997
Year
Mixed-phenotype Acute LeukemiaMsh3 GenesMethotrexate-resistant CellsMyeloid NeoplasiaHematological MalignancyHmutsα/hmutsβ RatioBase–base Mismatch RepairCancer ResearchHeterodimeric HmutsalphaRedox SignalingBiochemistryNuclear Hmsh2Reactive Oxygen SpecieCell BiologyBiomolecular EngineeringReductive StressChromatinMalignant Blood DisorderMedicine
The level and fate of hMSH3 (human MutS homolog 3) were examined in the promyelocytic leukemia cell line HL-60 and its methotrexate-resistant derivative HL-60R, which is drug resistant by virtue of an amplification event that spans the dihydrofolate reductase (DHFR) and MSH3 genes. Nuclear extracts from HL-60 and HL-60R cells were subjected to an identical, rapid purification protocol that efficiently captures heterodimeric hMutSalpha (hMSH2. hMSH6) and hMutSbeta (hMSH2.hMSH3). In HL-60 extracts the hMutSalpha to hMutSbeta ratio is roughly 6:1, whereas in methotrexate-resistant HL-60R cells the ratio is less than 1:100, due to overproduction of hMSH3 and heterodimer formation of this protein with virtually all the nuclear hMSH2. This shift is associated with marked reduction in the efficiency of base-base mismatch and hypermutability at the hypoxanthine phosphoribosyltransferase (HPRT) locus. Purified hMutSalpha and hMutSbeta display partial overlap in mismatch repair specificity: both participate in repair of a dinucleotide insertion-deletion heterology, but only hMutSalpha restores base-base mismatch repair to extracts of HL-60R cells or hMSH2-deficient LoVo colorectal tumor cells.
| Year | Citations | |
|---|---|---|
Page 1
Page 1