Academic Assembly, Institute of Agriculture, Shinshu University, 8304 Minami-Minowa, Kami-Ina, Nagano, 399-4598, Japan.
The Institute of Scientific Industrial Research, Osaka University, Mihogaoka, Ibaraki, Osaka, 567-0047, Japan.
Chemistry. 2018 Oct 26;24(60):16066-16071. doi: 10.1002/chem.201804428. Epub 2018 Oct 23.
Fusicoccins (FCs) exhibit various cellular activities in mammalian cells, but details of the mechanism of action are not fully understood. In this study, we synthesized two pairs of model derivatives of FCs differing only in the presence and absence of a 12-hydroxyl group and evaluated their binding to a 14-3-3 protein together with various mode 1 and mode 3 phosphopeptide ligands. Our results demonstrate that the 12-hydroxyl group hampers binding to 14-3-3 with mode 1 phospholigands, presumably due to steric repulsion with the i+2 residue. Furthermore, cell-based evaluations showed that only non-substituted FCs exhibit significant cytotoxicity and all 12-hydroxyl derivatives were inactive, demonstrating a clear correlation with their ability to form ternary complexes with 14-3-3 and a mode 1 ligand. These results suggest that binding to 14-3-3 and a partner protein(s) possessing a mode 1 sequence plays a role in the mechanism of action of 12-non-substituted FCs.
真菌环肽(FCs)在哺乳动物细胞中表现出多种细胞活性,但作用机制的细节尚不完全清楚。在这项研究中,我们合成了两对仅在存在和不存在 12-羟基的 FCs 模型衍生物,并评估了它们与 14-3-3 蛋白以及各种模式 1 和模式 3 磷酸肽配体的结合。我们的结果表明,12-羟基基团可能由于与 i+2 残基的空间排斥而阻碍与模式 1 磷酸配体结合 14-3-3。此外,基于细胞的评估表明,只有未取代的 FCs 表现出显著的细胞毒性,而所有 12-羟基衍生物均无活性,这与它们与 14-3-3 和模式 1 配体形成三元复合物的能力明显相关。这些结果表明,与具有模式 1 序列的 14-3-3 和伙伴蛋白的结合在未取代的 FCs 的作用机制中起作用。