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Comparison of potential markers of farnesyltransferase inhibition
A A Adjei1, J N Davis, C Erlichman
1Division of Medical Oncology, Mayo Clinic, Rochester, Minnesota 55905, USA. Adjei.Alex@Mayo.edu
Abstract:
Farnesyltransferase inhibitors (FTIs) were developed to target abnormal signaling pathways that are commonly activated in neoplastic cells. Five FTIs have recently undergone Phase I testing; and two are currently in Phase II clinical trials. As part of the development of these agents, there has been interest in determining their cellular effects in the clinical setting. Several approaches have been proposed, including measurement of FT enzymatic activity, evaluation of the processing of FT polypeptide substrates, and assessment of the accumulation of p21waf1. In the present study, a number of these assays have been compared in four cultured human neoplastic cell lines of different histology (A549, HCT116, BxPC-3, and MCF-7) after treatment with the nonpeptidomimetic FTI SCH66336 and the peptidomimetic inhibitor FTI-277. Immunoblotting studies failed to demonstrate a mobility shift in ras proteins or increased accumulation of p21waf1 after treatment with these agents. In contrast, drug-induced increases in the slower migrating, unprocessed species of the chaperone protein HDJ-2 and the intranuclear intermediate filament protein lamin A were detected in all four cell lines after treatment with either agent. Unprocessed forms of both polypeptides accumulated in noncycling as well as cycling cells. The precursor peptide that is present in prelamin A but absent from mature lamin A could be readily detected by immunohistochemistry in noncycling cells with a peptide-specific antiserum. Our results indicate that unprocessed HDJ-2 and prelamin A should be suitable markers of FT inhibition in clinical samples.
Insights
Farnesyltransferase inhibitors (FTIs) show promise in cancer therapy. Unprocessed HDJ-2 and prelamin A are identified as reliable cellular markers for monitoring FTI effectiveness in clinical settings.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Farnesyltransferase inhibitors (FTIs) target aberrant signaling in neoplastic cells.
- Several FTIs have advanced to Phase I and II clinical trials.
- Assessing cellular effects of FTIs in clinical settings is crucial for drug development.
Purpose of the Study:
- To compare different assays for measuring FTI cellular effects.
- To identify reliable biomarkers for FTI activity in clinical samples.
- To evaluate the efficacy of FTI SCH66336 and FTI-277 in human cancer cell lines.
Main Methods:
- Treatment of four human neoplastic cell lines (A549, HCT116, BxPC-3, MCF-7) with FTIs SCH66336 and FTI-277.
- Immunoblotting to assess ras protein processing and p21waf1 accumulation.
- Detection of unprocessed HDJ-2 and lamin A species.
- Immunohistochemistry using a peptide-specific antiserum for prelamin A.
Main Results:
- Immunoblotting did not show ras protein mobility shifts or p21waf1 accumulation.
- Drug treatment induced accumulation of unprocessed HDJ-2 and lamin A in all cell lines.
- Unprocessed HDJ-2 and lamin A accumulated in both cycling and noncycling cells.
- Precursor peptide of prelamin A was detectable in noncycling cells via immunohistochemistry.
Conclusions:
- Unprocessed HDJ-2 and prelamin A are suitable biomarkers for FT inhibition.
- These markers can be effectively monitored in clinical samples.
- The findings support the clinical development of FTIs by providing reliable assessment tools.