In vivo imaging of proteasome inhibition using a proteasome-sensitive fluorescent reporter
Isao Momose1, Daisuke Tatsuda, Shun-ichi Ohba
1Institute of Microbial Chemistry, Numazu, Shizuoka, Japan. imomose@bikaken.or.jp
Abstract:
A proteasome degrades numerous regulatory proteins that are critical for tumor growth and is therefore recognized as a promising anticancer target. Determining proteasome activity in the tumors of mice bearing xenografts is essential for the development of novel proteasome inhibitors. We developed a system for in vivo imaging of proteasome inhibition in the tumors of living mice, using a proteasome-sensitive fluorescent reporter, ZsProSensor-1. This reporter consists of a green fluorescent protein, ZsGreen, fused to mouse ornithine decarboxylase, which is degraded by the proteasome without being ubiquitinated. In stably transfected cells expressing ZsProSensor-1, the fluorescent reporter was rapidly degraded under steady-state conditions, whereas it was stabilized in the presence of proteasome inhibitors. Subcutaneous inoculation of the transfected cells into nude mice resulted in tumor formation. When the proteasome inhibitor bortezomib was intravenously administered to mice bearing these tumors, the ZsProSensor-1 protein accumulated in the tumors and emitted a fluorescent signal in a dose-dependent manner. Robust fluorescence was sustained for 3 days and then gradually decreased to baseline levels within 15 days. Intravenous administration of bortezomib also showed potent antitumor activity. In contrast, oral administration of bortezomib did not result in fluorescent protein accumulation in tumors or exhibit any antitumor activity. These results indicate that in vivo imaging using the ZsProSensor-1 fluorescent protein can be used as an indicator of antitumor activity and will be a powerful tool for the development of novel proteasome inhibitors.
Insights
We developed a novel fluorescent reporter system for in vivo imaging of proteasome inhibition in tumors. This system tracks proteasome activity, aiding the development of new anticancer drugs targeting the proteasome.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- The proteasome is a critical regulator of cellular processes and a validated target for cancer therapy.
- Assessing proteasome activity in vivo is crucial for developing effective proteasome inhibitors.
Purpose of the Study:
- To develop and validate a novel in vivo imaging system for monitoring proteasome inhibition in tumors.
- To evaluate the utility of this system in assessing the efficacy of proteasome inhibitors.
Main Methods:
- Development of a proteasome-sensitive fluorescent reporter (ZsProSensor-1) comprising ZsGreen fused to mouse ornithine decarboxylase.
- Stable transfection of cells with ZsProSensor-1 and assessment of reporter stability under proteasome inhibition.
- In vivo imaging of ZsProSensor-1 accumulation in tumors of mice treated with the proteasome inhibitor bortezomib.
Main Results:
- ZsProSensor-1 was rapidly degraded under normal conditions and stabilized upon proteasome inhibition.
- Intravenous administration of bortezomib led to dose-dependent ZsProSensor-1 accumulation and fluorescence in tumors.
- Sustained fluorescence for 3 days post-treatment correlated with bortezomib's antitumor activity, unlike oral administration.
- Oral bortezomib administration failed to show fluorescence or antitumor effects.
Conclusions:
- In vivo imaging with ZsProSensor-1 serves as a reliable indicator of proteasome inhibition and therapeutic response.
- This imaging system is a valuable tool for the preclinical development and optimization of novel proteasome inhibitors.
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