Morita Kenta, Nishimura Kanon, Yamamoto Shota, Shimizu Natsumi, Yashiro Tomoko, Kawabata Ryoko, Aoi Takashi, Tamura Atsuo, Maruyama Tatsuo
Department of Chemical Science and Engineering, Graduate School of Engineering, Kobe University, 1-1 Rokkodaicho, Nada-ku, Kobe 657-8501, Japan.
Graduate School of Medicine, Kobe University, 7-5-2 Kusunoki-cho, Chuou-ku, Kobe 650-0017, Japan.
JACS Au. 2022 Jul 28;2(9):2023-2028. doi: 10.1021/jacsau.2c00301. eCollection 2022 Sep 26.
Cell-selective killing using molecular self-assemblies is an emerging concept for cancer therapy. Reported molecular self-assemblies are triggered by hydrolysis of well-designed molecules inside or outside cancer cells. This hydrolysis can occur in cancer and normal cells because of the abundance of water in living systems. Here, we report the in situ synthesis of a self-assembling molecule using a tyrosine kinase overexpressed in cancer cells. We designed a tyrosine-containing peptide amphiphile (C16-E4Y) that is transformed into a phosphorylated peptide amphiphile (C16-E4pY) by the overexpressed tyrosine kinase. Phosphorylation of C16-E4Y promoted self-assembly to form nanofibers in cancer cells. C16-E4Y exhibited selective cytotoxicity toward cancer cells overexpressing the tyrosine kinase. Self-assembled C16-E4pY induced endoplasmic reticulum stress that caused apoptotic cell death. Animal experiments revealed that C16-E4Y has antitumor activity. These results show that an enzyme overexpressed in cancer cells is available for intracellular synthesis of an antitumor self-assembling drug that is cell-selective.
利用分子自组装进行细胞选择性杀伤是癌症治疗中一个新兴的概念。已报道的分子自组装是由癌细胞内部或外部精心设计的分子水解引发的。由于生命系统中富含水,这种水解在癌细胞和正常细胞中都可能发生。在此,我们报道了利用癌细胞中过表达的酪氨酸激酶原位合成一种自组装分子。我们设计了一种含酪氨酸的肽两亲分子(C16-E4Y),它被过表达的酪氨酸激酶转化为磷酸化肽两亲分子(C16-E4pY)。C16-E4Y的磷酸化促进了自组装,在癌细胞中形成纳米纤维。C16-E4Y对过表达酪氨酸激酶的癌细胞表现出选择性细胞毒性。自组装的C16-E4pY诱导内质网应激,导致细胞凋亡死亡。动物实验表明C16-E4Y具有抗肿瘤活性。这些结果表明,癌细胞中过表达的一种酶可用于细胞内合成具有细胞选择性的抗肿瘤自组装药物。