Taniguchi Sachiho, Ono Yuji, Doi Yukako, Taniguchi Shogo, Matsuura Yuta, Iwasaki Ayuka, Hirata Noriaki, Fukuda Ryosuke, Inoue Keitaro, Yamaguchi Miho, Tashiro Anju, Egami Daichi, Aoki Shunsuke, Kondoh Yasumitsu, Honda Kaori, Osada Hiroyuki, Kumeta Hiroyuki, Saio Tomohide, Okiyoneda Tsukasa
Department of Biomedical Sciences, School of Biological and Environmental Sciences, Kwansei Gakuin University, Hyogo 669-1337, Japan.
Department of Bioscience and Bioinformatics, Graduate School of Computer Science and Systems Engineering, Kyushu Institute of Technology, Fukuoka 820-8502, Japan.
Biochem Pharmacol. 2023 Sep;215:115730. doi: 10.1016/j.bcp.2023.115730. Epub 2023 Aug 4.
The E3 ubiquitin ligase RFFL is an apoptotic inhibitor highly expressed in cancers and its knockdown suppresses cancer cell growth and sensitizes to chemotherapy. RFFL also participates in peripheral protein quality control which removes the functional cell surface ΔF508-CFTR channel and reduces the efficacy of pharmaceutical therapy for cystic fibrosis (CF). Although RFFL inhibitors have therapeutic potential for both cancer and CF, they remain undiscovered. Here, a chemical array screening has identified α-tocopherol succinate (αTOS) as an RFFL ligand. NMR analysis revealed that αTOS directly binds to RFFL's substrate-binding region without affecting the E3 enzymatic activity. Consequently, αTOS inhibits the RFFL-substrate interaction, ΔF508-CFTR ubiquitination and elimination from the plasma membrane of epithelial cells, resulting in the increased functional CFTR channel. Among the α-tocopherol (αTOL) analogs we tested, only αTOS inhibited the RFFL-substrate interaction and increased the cell surface ΔF508-CFTR, depending on RFFL expression. Similarly, the unique proapoptotic effect of αTOS was dependent on RFFL expression. Thus, unlike other αTOL analogs, αTOS acts as an RFFL protein-protein interaction inhibitor which may explain its unique biological properties among αTOL analogs. Moreover, αTOS may act as a CFTR stabilizer, a novel class of drugs that extend cell surface ΔF508-CFTR lifetime.
E3泛素连接酶RFFL是一种在癌症中高表达的凋亡抑制剂,敲低其表达可抑制癌细胞生长并使癌细胞对化疗敏感。RFFL还参与外周蛋白质质量控制,该过程会清除功能性细胞表面的ΔF508 - CFTR通道,并降低囊性纤维化(CF)药物治疗的疗效。尽管RFFL抑制剂对癌症和CF都具有治疗潜力,但尚未被发现。在此,化学阵列筛选已鉴定出琥珀酸α-生育酚(αTOS)为RFFL配体。核磁共振分析表明,αTOS直接与RFFL的底物结合区域结合,而不影响E3酶活性。因此,αTOS抑制RFFL与底物的相互作用、ΔF508 - CFTR泛素化以及从上皮细胞质膜的清除,从而导致功能性CFTR通道增加。在我们测试的α-生育酚(αTOL)类似物中,只有αTOS抑制RFFL与底物的相互作用并增加细胞表面的ΔF508 - CFTR,这取决于RFFL的表达。同样,αTOS独特的促凋亡作用也取决于RFFL的表达。因此,与其他αTOL类似物不同,αTOS作为一种RFFL蛋白质-蛋白质相互作用抑制剂,这可能解释了其在αTOL类似物中的独特生物学特性。此外,αTOS可能作为一种CFTR稳定剂,这是一类新型药物,可延长细胞表面ΔF508 - CFTR的寿命。