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Updated: Apr 26, 2026

Spatio-Temporal Manipulation of Small GTPase Activity at Subcellular Level and on Timescale of Seconds in Living Cells
Published on: March 9, 2012
Development of EHop-016: a small molecule inhibitor of Rac
Suranganie Dharmawardhane1, Eliud Hernandez1, Cornelis Vlaar1
1Department of Biochemistry, University of Puerto Rico Medical Sciences Campus, San Juan, Puerto Rico, USA.
Abstract:
The Rac inhibitor EHop-016 was developed as a compound with the potential to inhibit cancer metastasis. Inhibition of the first step of metastasis, migration, is an important strategy for metastasis prevention. The small GTPase Rac acts as a pivotal binary switch that is turned "on" by guanine nucleotide exchange factors (GEFs) via a myriad of cell surface receptors, to regulate cancer cell migration, survival, and proliferation. Unlike the related GTPase Ras, Racs are not usually mutated, but overexpressed or overactivated in cancer. Therefore, a rational Rac inhibitor should block the activation of Rac by its upstream effectors, GEFs, and the Rac inhibitor NSC23766 was developed using this rationale. However, this compound is ineffective at inhibiting the elevated Rac activity of metastatic breast cancer cells. Therefore, a panel of small molecule compounds were derived from NSC23766 and screened for Rac activity inhibition in metastatic cancer cells. EHop-016 was identified as a compound that blocks the interaction of Rac with the GEF Vav in metastatic human breast cancer cells with an IC50 of ~1μM. At higher concentrations (10μM), EHop-016 inhibits the related Rho GTPase Cdc42, but not Rho, and also reduces cell viability. Moreover, EHop-016 inhibits the activation of the Rac downstream effector p21-activated kinase, extension of motile actin-based structures, and cell migration. Future goals are to develop EHop-016 as a therapeutic to inhibit cancer metastasis, either individually or in combination with current anticancer compounds. The next generation of EHop-016-based Rac inhibitors is also being developed.
Insights
A new Rac inhibitor, EHop-016, effectively blocks Rac-GEF interaction in metastatic breast cancer cells, inhibiting cancer cell migration. This compound shows promise for developing novel anti-metastasis therapeutics.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Cancer metastasis involves cell migration regulated by the small GTPase Rac.
- Rac is overexpressed/overactivated in cancer, making it a therapeutic target.
- Existing Rac inhibitors like NSC23766 are ineffective against metastatic cancer cells.
Purpose of the Study:
- To identify novel small molecule compounds that inhibit Rac activity in metastatic cancer cells.
- To develop a more effective Rac inhibitor than NSC23766 for cancer metastasis prevention.
Main Methods:
- Screening of NSC23766-derived compounds for Rac activity inhibition.
- Biochemical assays to determine IC50 values and target interactions.
- Assessment of downstream effector inhibition and cell migration assays.
Main Results:
- EHop-016 identified as a potent inhibitor of Rac-GEF (Vav) interaction in metastatic breast cancer cells (IC50 ~1μM).
- EHop-016 inhibits Rac downstream signaling, including p21-activated kinase activation and actin-based structures.
- EHop-016 effectively reduces cancer cell migration and, at higher concentrations, cell viability.
Conclusions:
- EHop-016 demonstrates significant potential as a therapeutic agent to inhibit cancer metastasis.
- Further development of EHop-016, individually or in combination therapies, is warranted.
- Next-generation EHop-016 analogs are under development for enhanced efficacy.
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