4.7 Article

Thioridazine Enhances P62-Mediated Autophagy and Apoptosis Through Wnt/-Catenin Signaling Pathway in Glioma Cells

期刊

出版社

MDPI
DOI: 10.3390/ijms20030473

关键词

thioridazine; glioblastoma; Wnt; -catenin; P62; autophagy; apoptosis

资金

  1. Ministry of Science and Technology (MOST) [107-2320-B-037-027, MOST 103-2325-B-010-006, 107-2320-B-010-040-MY3]
  2. Kaohsiung Medical University [KMTTH-105-010, KMTTH-106-009, NSYSUKMU-106-P004, NSYSUKMU-107-P006]
  3. Kaohsiung Medical University Hospital
  4. National Sun Yat-sen University

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Thioridazine (THD) is a common phenothiazine antipsychotic drug reported to suppress growth in several types of cancer cells. We previously showed that THD acts as an antiglioblastoma and anticancer stem-like cell agent. However, the signaling pathway underlying autophagy and apoptosis induction remains unclear. THD treatment significantly induced autophagy with upregulated AMPK activity and engendered cell death with increased sub-G1 in glioblastoma multiform (GBM) cell lines. Notably, through whole gene expression screening with THD treatment, frizzled (Fzd) proteins, a family of G-protein-coupled receptors, were found, suggesting the participation of Wnt/-catenin signaling. After THD treatment, Fzd-1 and GSK3-S9 phosphorylation (inactivated form) was reduced to promote -catenin degradation, which attenuated P62 inhibition. The autophagy marker LC3-II markedly increased when P62 was released from -catenin inhibition. Additionally, the P62-dependent caspase-8 activation that induced P53-independent apoptosis was confirmed by inhibiting T-cell factor/-catenin and autophagy flux. Moreover, treatment with THD combined with temozolomide (TMZ) engendered increased LC3-II expression and caspase-3 activity, indicating promising drug synergism. In conclusion, THD induces autophagy in GBM cells by not only upregulating AMPK activity, but also enhancing P62-mediated autophagy and apoptosis through Wnt/-catenin signaling. Therefore, THD is a potential alternative therapeutic agent for drug repositioning in GBM.

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