Targeting the PLEC/TPM4 cytoskeletal axis: DT-13 inhibits colorectal cancer metastasis through direct binding to PLEC and inactivation of Akt/ERK signaling.
Aug 2026· Phytomedicine· Vol 161, pp.
158743
· 0 citations· 52 references
Medicine
TL;DR
DT-13 exerts anti-metastatic effects in CRC by disrupting the PLEC/TPM4 cytoskeletal scaffold and suppressing the epithelial-mesenchymal transition process, highlighting the clinical potential of DT-13 as a safer therapeutic alternative for patients with metastatic CRC.
Abstract
Background
Metastasis is the leading cause of colorectal cancer (CRC) mortality. Standard 5-fluorouracil (5-FU) has limited anti-metastatic efficacy and dose-dependent toxicities, underscoring the need for therapeutic alternatives with improved safety profiles.
Methods
This study investigated the anti‑metastatic mechanism of Liriope muscari baily saponins C (DT‑13) in CRC. Cell viability, migration, and invasion were assessed in HCT116 cells. An orthotopic CRC model was established in BALB/c nude mice to compare the therapeutic efficacy and hematological safety of DT-13 against 5-FU. Direct targets of DT-13 were identified using chemical proteomics (small‑molecule pull‑down, cellular thermal shift assay, drug affinity responsive target stability assay) and molecular dynamics simulations.
Results
DT-13 inhibited HCT116 proliferation (IC50 ∼19 μM) and reduced migration and invasion by 78 % and 90 % in vitro. In vivo, DT-13 achieved a comparable reduction in tumor volume to 5-FU (21 % of control volume), while exhibiting a favorable safety profile. Chemical proteomics identified plectin (PLEC) as a primary direct target of DT-13. Molecular docking revealed a binding affinity of -7.654 kcal/mol. Mechanistically, DT-13 occupied the calponin homology domain of PLEC, disrupting its interaction with tropomyosin-4 (TPM4). This led to TPM4 downregulation and subsequently inhibition of Akt and ERK signaling pathways, thereby suppressing the epithelial-mesenchymal transition process.
Conclusion
DT‑13 exerts anti-metastatic effects in CRC by disrupting the PLEC/TPM4 cytoskeletal scaffold. DT-13 achieved potent anti-metastatic efficacy with a significantly improved systemic safety profile compared to 5-FU. These findings highlight the clinical potential of DT-13 as a safer therapeutic alternative for patients with metastatic CRC.
Breast cancer (BC) is a notoriously difficult malignancy to treat due to its high molecular heterogeneity and drug resistance. The vast structural diversity of marine-derived compounds remains underutilized in oncology drug development. This study investigates the anti-tumor potential and underlying molecular mechanism...
Results demonstrate that MLN4924 exerts antitumor effects in pancreatic cancer by targeting the PTGS2-EGFR-PI3K/AKT/mTOR axis, providing a mechanistic rationale for its clinical application in pancreatic cancer therapy.
Min Wang, Y. Mou, Jiajie Qiu et al.· Anti-Cancer Drugs· 0 citations
Immune checkpoint inhibitors (ICIs) play a key role in treating advanced gastric cancer; however, their efficacy is limited in patients with proficient mismatch repair (pMMR) tumors. Therefore, enhancing ICIs sensitivity in this subgroup is crucial. Preclinical studies have indicated that cytotoxic and anti-angiogeni...
Jinming Li, M. Da, Xue-Ying Zhou et al.· Scientific Reports· 0 citations
RIPK3 enhances the sensitivity of colorectal cancer cells to 5-FU and increases the efficacy of 5-FU in inhibiting cell proliferation, invasion, and migration by activating cellular autophagy through inhibition of the AKT-mTOR signaling pathway, thereby reversing drug resistance in colorectal cancer cells.
Biao Wang, Xiao-Tong An, Wei-Hua Fu· Scientific Reports· 0 citations
Introduction Gastric cancer is a prevalent and lethal malignancy, yet effective biomarkers remain limited. SPRED3 has been implicated in other cancers, but its role in gastric cancer has remained completely unexplored. Methods SPRED3 expression and clinical significance were analyzed using TCGA and GEO datasets. Knockd...
Shao-Wei Sun, Jiang-Tao Yu, Xiang-Yun Zheng et al.· Frontiers in Oncology· 0 citations
It is demonstrated that Fraxetin exerts multi-faceted effects against colorectal cancer, including anti-cancer activity, synergy with chemotherapy, and restoration of 5-FU sensitivity in 5-FU-resistant CRC cells in vitro, through multi-target inhibition of the PI3K-Akt signaling pathway.
Min-Fang Guo, Liang-Dong Zhu, Jian-Jin Guo et al.· Biochemical and Biophysical...· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.