| Literature DB >> 30811507 |
Zachary D Nagel1, Andrew A Beharry2, Patrizia Mazzucato1, Gaspar J Kitange3, Jann N Sarkaria3, Eric T Kool2, Leona D Samson1.
Abstract
The DNA repair protein O6-methylguanine DNA methyltransferase (MGMT) strongly influences the effectiveness of cancer treatment with chemotherapeutic alkylating agents, and MGMT status in cancer cells could potentially contribute to tailored therapies for individual patients. However, the promoter methylation and immunohistochemical assays presently used for measuring MGMT in clinical samples are indirect, cumbersome and sometimes do not accurately report MGMT activity. Here we directly compare the accuracy of 6 analytical methods, including two fluorescent reporter assays, against the in vitro MGMT activity assay that is considered the gold standard for measuring MGMT DNA repair capacity. We discuss the relative advantages of each method. Our data indicate that two recently developed fluorescence-based assays measure MGMT activity accurately and efficiently, and could provide a functional dimension to clinical efforts to identify patients who are likely to benefit from alkylating chemotherapy.Entities:
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Year: 2019 PMID: 30811507 PMCID: PMC6392231 DOI: 10.1371/journal.pone.0208341
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Fig 1MGMT activity measured by 6 methods in 7 cell lines.
A) MGMT activity reported as femtomoles of cleaved 32P labeled O6-MeG containing oligonucleotide per microgram of protein in cell lysates. B) MGMT transcript levels normalized to TK6+MGMT. C) MGMT activity measured by FM-HCR, reported as the inverse of reporter expression. D) MGMT protein levels in cell lysates measured by quantitative western blotting and normalized to GAPDH protein levels. E) MGMT activity in cell lysates measured using the NR-1 fluorescent probe and reported in arbitrary units of fluorescence. F) Results of methylation specific PCR assays for MGMT promoter methylation; a value of 1 was assigned to the three cell lines in which promoter methylation was detected. Cell lines were ranked in ascending order of MGMT activity measured by the biochemical assay in panel A; the order and color scheme is preserved in each panel. Error bars represent the standard deviation of at least 3 measurements, and “ND” indicates that the 95% confidence interval for the measured parameter included zero. Data have been log transformed for optimal data visualization.
Fig 2Comparison of four quantitative MGMT assays against the biochemical MGMT assay with radiolabeled oligonucleotides.
All assays have been normalized to a control cell line (TK6+MGMT), which expresses a high level of MGMT. The Pearson correlation (R) to MGMT activity measured using biochemical assays with 32P-labeled oligonucleotide substrates is reported for each assay. Each data point represents one of the seven cell lines analyzed; fewer data points are reported for assays where some cell lines were below the limit of detection.
Sample requirements and capabilities of MGMT assays.
Active time and total time were calculated for processing a single sample. Total time includes passive waiting time necessary for automated analytical processes and sample incubation. The estimates do not include time required to produce the oligonucleotides, fluorescent probes, antibodies and plasmids that are used.
| 32P Biochemical | qPCR | Western Blot | MS-PCR | FM-HCR | NR-1 Probe | |
|---|---|---|---|---|---|---|
| 7 [15] | 1.5 [5] | 3 [13] | 2 [5] | 1.5 [20] | 1.5 [3] | |
| 107−108 | 103 | 105−106 | 106 | 106 | 107−108 | |
| 62 | 62 | 4.3 | NA | 62 | 4.3 | |
| No | ||||||
| Lysate | Lysate | Lysate | Lysate | Intact | Lysate | |
| $11 | $5 | $16 | $10 | $24 | $0.06 | |
| No | No | No |
1Requirements refer to the approaches used here; a range is given for methods found to require more cells to lower MGMT levels.
2Dynamic range was calculated by dividing the activity (as measured using the biochemical assay) of the most active sample (TK6+MGMT) by the activity of the least active sample for which activity could be significantly distinguished from background.
3Intact refers to methods that can be carried out in live cells.
4Approximate cost of generating or purchasing materials needed to carry out each assay in triplicate using the approaches in methods.