Incarvine C and its analogues inhibit the formation of cell cytoskeleton by targeting Rac1
Pengxiang Zhao1, Jie Zhang2, Weirong Song3
1State Key Laboratory of Plateau Ecology and Agriculture, Qinghai University, 251 Ningda Road, Xining 810016, Qinghai, China; Department of Pharmacy, Medical College of Qinghai University, 16 Kunlun Road, Xining 810016, Qinghai, China.
Abstract:
Ras-related C3 botulinum toxin substrate 1 (Rac1) has emerged as a key regulator in the treatment of cancer metastasis because of its involvement in the formation of cell plate pseudopods and effects on cell migration. In this study, we found that incarvine C, a natural product isolated from Incarvillea sinensis, and its seven analogues exhibited antitumour activity by inhibiting cell cytoskeleton formation, with moderate cytotoxicity. Accordingly, these compounds inhibited the cytoskeleton-mediated migration and invasion of MDA-MB-231 cells, with inhibition rates ranging from 37.30 % to 69.72 % and 51.27 % to 70.90 % in vitro, respectively. Moreover, they induced G2/M phase cell cycle arrest in MDA-MB-231 cells. A pull-down assay revealed that the interaction between Rac1 and its downstream effector protein PAK1 was inhibited by these compounds and that the compound Ano-6 exhibited substantial activity, with an inhibition rate of more than 90 %. Molecular docking showed that incarvine C and its analogues could bind to the nucleotide-binding pocket of Rac1, maintaining high levels of inactivated Rac1. As Ano-6 exhibited significant activity in vitro, its anti-cancer activity was tested in vivo. Four weeks of oral treatment with Ano-6 was well-tolerated in mice, and it induced a potential anti-tumour response in xenografts of MDA-MB-231 cells. Further studies demonstrated that Ano-6 was enriched in tumour tissues after 2 h of administration and induced an increase in the number of dead tumour cells. In summary, these findings not only reveal the mechanism of incarvine C but also provide a new molecular template for Rac1 inhibitors and identify a promising candidate for breast cancer treatment.
Insights
Natural compounds incarvine C and its analogues inhibit cancer cell migration and invasion by targeting Rac1 (Ras-related C3 botulinum toxin substrate 1). Ano-6 shows promising anti-cancer effects in vitro and in vivo, offering a new therapeutic candidate.
Area of Science:
- Pharmacology
- Oncology
- Molecular Biology
Background:
- Rac1 (Ras-related C3 botulinum toxin substrate 1) is crucial for cancer metastasis via cell migration and invasion.
- Incarvillea sinensis yields natural products with potential anti-cancer properties.
Purpose of the Study:
- To investigate the anti-cancer effects of incarvine C and its analogues.
- To elucidate their mechanism of action, focusing on Rac1 inhibition.
- To evaluate Ano-6 as a potential breast cancer therapeutic.
Main Methods:
- In vitro assays assessing cell migration, invasion, and cytotoxicity.
- Cell cycle analysis (G2/M phase arrest).
- Pull-down assays for Rac1-PAK1 interaction, molecular docking, and in vivo xenograft studies.
Main Results:
- Incarvine C and analogues inhibited MDA-MB-231 cell migration (37.30–69.72%) and invasion (51.27–70.90%).
- Compounds induced G2/M cell cycle arrest and inhibited Rac1-PAK1 interaction, with Ano-6 showing >90% inhibition.
- Ano-6 demonstrated anti-tumour activity in vivo, was well-tolerated, and increased tumor cell death.
Conclusions:
- Incarvine C and analogues are effective Rac1 inhibitors with anti-metastatic properties.
- Ano-6 is a promising candidate for breast cancer treatment.
- These compounds provide a novel molecular template for developing Rac1-targeted cancer therapies.
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