Anticancer Agent Research Center, Korea Research Institute of Bioscience and Biotechnology, Cheongju 28116, South Korea; Department of Biomolecular Science, KRIBB School of Bioscience, University of Science and Technology, Daejeon 34141, South Korea.
Anticancer Agent Research Center, Korea Research Institute of Bioscience and Biotechnology, Cheongju 28116, South Korea.
Biochem Pharmacol. 2020 May;175:113861. doi: 10.1016/j.bcp.2020.113861. Epub 2020 Feb 17.
Autophagy plays a major role in cell survival and has therefore been exploited as an important strategy in cancer therapy. In this study, we evaluated the autophagy-regulatory effects of kushenol E (KE), a bi-prenylated flavonoid isolated from Sophora flavescens and found that KE increased LC3B-II levels while inducing the formation of autophagic vacuoles and immature autophagosomes in HeLa and HCT116 cells. Transmission electron microscopy images revealed that KE treatment generates immature autophagosomes. Furthermore, KE inhibited autophagosome maturation as demonstrated by blocking the degradation of EGFP puncta in HeLa cells stably expressing EGFP-mRFP-LC3B. It also reduced lysosomal activity and cathepsin maturation by disrupting lysosomal positioning, subsequently inducing apoptosis. Further, a combinatorial approach employing cellular thermal shift assays, revealed valosin-containing protein (VCP)/p97 as a potential target protein of KE; the knockdown and overexpression of VCP/p97 confirmed its involvement in regulating lysosomal positioning for autophagy maturation via direct interactions with KE. Thus, KE may possess autophagy-regulating properties mediated by binding to VCP/p97.
自噬在细胞存活中起着重要作用,因此已被作为癌症治疗的重要策略加以利用。在这项研究中,我们评估了从苦参中分离得到的双芳基查尔酮类化合物苦参醇 E(KE)对自噬的调节作用,发现 KE 在诱导 HeLa 和 HCT116 细胞形成自噬小体和不成熟自噬体的同时增加了 LC3B-II 水平。透射电子显微镜图像显示 KE 处理产生不成熟的自噬体。此外,KE 通过阻断 HeLa 细胞中稳定表达 EGFP-mRFP-LC3B 的 EGFP 斑点的降解,抑制自噬体成熟。KE 还通过破坏溶酶体定位来降低溶酶体活性和组织蛋白酶成熟,随后诱导细胞凋亡。进一步采用细胞热位移分析的组合方法,发现 VCP/p97 是 KE 的潜在靶蛋白;VCP/p97 的敲低和过表达证实了其通过与 KE 的直接相互作用参与调节溶酶体定位以促进自噬成熟。因此,KE 可能通过与 VCP/p97 结合具有自噬调节特性。