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Proteasome inhibitors: a novel class of potent and effective antitumor agents
J Adams1, V J Palombella, E A Sausville
1ProScript, Inc., Cambridge, Massachusetts 02139, USA. jadams@proscript.com
Abstract:
The ubiquitin-proteasome pathway plays a critical role in the regulated degradation of proteins involved in cell cycle control and tumor growth. Dysregulating the degradation of such proteins should have profound effects on tumor growth and cause cells to undergo apoptosis. To test this hypothesis, we developed a novel series of proteasome inhibitors, exemplified by PS-341, which we describe here. As determined by the National Cancer Institute in vitro screen, PS-341 has substantial cytotoxicity against a broad range of human tumor cells, including prostate cancer cell lines. The PC-3 prostate cell line was, therefore, chosen to further examine the antitumor activity of PS-341. In vitro, PS-341 elicits proteasome inhibition, leading to an increase in the intracellular levels of specific proteins, including the cyclin-dependent kinase inhibitor, p21. Moreover, exposure of such cells to PS-341 caused them to accumulate in the G2-M phase of the cell cycle and subsequently undergo apoptosis, as indicated by nuclear condensation and poly(ADP-ribose) polymerase cleavage. Following weekly i.v. treatment of PS-341 to mice bearing the PC-3 tumor, a significant decrease (60%) in tumor burden was observed in vivo. Direct injection of PS-341 into the tumor also caused a substantial (70%) decrease in tumor volume with 40% of the drug-treated mice having no detectable tumors at the end of the study. Studies also revealed that i.v. administration of PS-341 resulted in a rapid and widespread distribution of PS-341, with highest levels identified in the liver and gastrointestinal tract and lowest levels in the skin and muscle. Modest levels were found in the prostate, whereas there was no apparent penetration of the central nervous system. An assay to follow the biological activity of the PS-341 was established and used to determine temporal drug activity as well as its ability to penetrate tissues. As such, PS-341 was shown to penetrate PC-3 tumors and inhibit intracellular proteasome activity 1.0 h after i.v. dosing. These data illustrate that PS-341 not only reaches its biological target but has a direct effect on its biochemical target, the proteasome. Importantly, the data show that inhibition of this target site by PS-341 results in reduced tumor growth in murine tumor models. Together, the results highlight that the proteasome is a novel biochemical target and that inhibitors such as PS-341 represent a unique class of antitumor agents. PS-341 is currently under clinical evaluation for advanced cancers.
Insights
Novel proteasome inhibitor PS-341 demonstrates significant antitumor activity by inducing apoptosis in cancer cells. This agent effectively reduces tumor burden in vivo, highlighting the proteasome as a viable therapeutic target for cancer treatment.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- The ubiquitin-proteasome pathway regulates protein degradation crucial for cell cycle control and tumor growth.
- Dysregulation of this pathway can profoundly impact tumor progression and induce apoptosis.
Purpose of the Study:
- To develop and evaluate novel proteasome inhibitors for their antitumor potential.
- To investigate the efficacy of PS-341 against human tumor cells, particularly prostate cancer.
Main Methods:
- PS-341 was screened for cytotoxicity against various human tumor cell lines.
- In vitro studies assessed proteasome inhibition, p21 levels, cell cycle arrest (G2-M), and apoptosis induction.
- In vivo studies involved i.v. administration and direct tumor injection of PS-341 in mice bearing PC-3 tumors.
- Pharmacokinetic and pharmacodynamic studies evaluated drug distribution and target engagement.
Main Results:
- PS-341 exhibited substantial cytotoxicity against a broad range of human tumor cells.
- In vitro, PS-341 induced proteasome inhibition, increased p21 levels, caused G2-M cell cycle arrest, and triggered apoptosis.
- In vivo, PS-341 significantly reduced tumor burden (60%) and tumor volume (70%), with 40% complete tumor eradication.
- PS-341 rapidly distributed and effectively inhibited proteasome activity within tumors post-administration.
Conclusions:
- PS-341 is a potent proteasome inhibitor with significant antitumor activity.
- Inhibition of the proteasome pathway by PS-341 leads to apoptosis and reduced tumor growth.
- PS-341 represents a promising novel class of antitumor agents currently in clinical evaluation.