Takagi Hiroko, Moyama Chiami, Taniguchi Keiko, Ando Kota, Matsuda Ryohei, Ando Shota, Ii Hiromi, Kageyama Susumu, Kawauchi Akihiro, Chouha Nora, Désaubry Laurent, Nakata Susumu
Department of Clinical Oncology, Kyoto Pharmaceutical University, Kyoto, Japan (H.T., C.M., K.T., K.A., R.M., S.A., H.I., S.N.); Department of Urology, Shiga University of Medical Science, Otsu, Japan (S.K., A.K.); University of Batna 2, Faculty of Biology, Batna, Algeria (N.C.); Regenerative Nanomedicine Laboratory (UMR1260), Faculty of Medicine, FMTS, INSERM-University of Strasbourg, Strasbourg, France (L.D.); and Sino-French Joint Laboratory of Food Nutrition/Safety and Medicinal Chemistry, College of Biotechnology, Tianjin University of Science and Technology, Tianjin, China (L.D.).
Department of Clinical Oncology, Kyoto Pharmaceutical University, Kyoto, Japan (H.T., C.M., K.T., K.A., R.M., S.A., H.I., S.N.); Department of Urology, Shiga University of Medical Science, Otsu, Japan (S.K., A.K.); University of Batna 2, Faculty of Biology, Batna, Algeria (N.C.); Regenerative Nanomedicine Laboratory (UMR1260), Faculty of Medicine, FMTS, INSERM-University of Strasbourg, Strasbourg, France (L.D.); and Sino-French Joint Laboratory of Food Nutrition/Safety and Medicinal Chemistry, College of Biotechnology, Tianjin University of Science and Technology, Tianjin, China (L.D.)
Mol Pharmacol. 2022 Feb;101(2):78-86. doi: 10.1124/molpharm.121.000334. Epub 2021 Dec 3.
Prohibitin-2 (PHB2) is a scaffold protein that has pleiotropic functions, which include interacting with -glutamylcyclotransferase (GGCT) in the cytoplasm and repressing the transcriptional activities of the () gene in the nucleus. The cytotoxic drug fluorizoline binds to PHB1/2 and exerts antiproliferative actions on cancer cells. However, the precise mechanism underlying the antiproliferative effects of fluorizoline is not fully elucidated. In the present study, we first show that fluorizoline induces p21 expression in several human cancer cell lines, including MCF7 breast cancer cells. Treatment of MCF7 cells with fluorizoline suppressed proliferation and prevented cells from entering into the DNA synthesis phase. Knockdown of p21 rescued the suppressed proliferation, indicating that fluorizoline inhibited MCF7 cell growth via the induction of p21. Overexpression of PHB2 in MCF7 cells prevented the induction of p21 expression by fluorizoline and restored the antiproliferative effects and blockade of cell cycle progression. Moreover, treatment of MCF7 cells with fluorizoline inhibited the interaction between endogenous PHB2 and GGCT proteins and reduced the level of nuclear localization of PHB2 proteins. These results indicate that targeting PHB2 with fluorizoline induces the expression of p21 and consequently blocks proliferation of cancer cells. SIGNIFICANCE STATEMENT: This study shows that fluorizoline may be a promising novel anticancer drug candidate that induces p21 expression and blocks cell-cycle progression in human cancer cell lines. In addition, we show that fluorizoline inhibits the interaction between PHB2 and GGCT and reduces the nuclear localization of PHB2 proteins.
抑制素-2(PHB2)是一种具有多种功能的支架蛋白,这些功能包括在细胞质中与γ-谷氨酰环化转移酶(GGCT)相互作用,并在细胞核中抑制()基因的转录活性。细胞毒性药物氟喹唑啉与PHB1/2结合,并对癌细胞发挥抗增殖作用。然而,氟喹唑啉抗增殖作用的精确机制尚未完全阐明。在本研究中,我们首先表明氟喹唑啉在包括MCF7乳腺癌细胞在内的几种人类癌细胞系中诱导p21表达。用氟喹唑啉处理MCF7细胞可抑制增殖并阻止细胞进入DNA合成期。敲低p21可挽救受抑制的增殖,表明氟喹唑啉通过诱导p21抑制MCF7细胞生长。在MCF7细胞中过表达PHB2可阻止氟喹唑啉诱导p21表达,并恢复抗增殖作用和细胞周期进程的阻滞。此外,用氟喹唑啉处理MCF7细胞可抑制内源性PHB2与GGCT蛋白之间的相互作用,并降低PHB2蛋白的核定位水平。这些结果表明,用氟喹唑啉靶向PHB2可诱导p21表达,从而阻断癌细胞的增殖。意义声明:本研究表明,氟喹唑啉可能是一种有前景的新型抗癌药物候选物,可诱导p21表达并阻断人类癌细胞系中的细胞周期进程。此外,我们表明氟喹唑啉抑制PHB2与GGCT之间的相互作用,并降低PHB2蛋白的核定位。