Mingrui Yuan, Shipeng Guan, Bowen Ouyang, Zifei Xu, Peng Wang, Qing Zhao, Chonglin Yang, Xiaojiang Hao, Qiuyuan Yin, Yingtong Di
Dysregulation of the autophagy-lysosome pathway is implicated in neurodegenerative disorders. To extend the chemical diversity of jatrophane diterpenoids from Euphorbia peplus and evaluate lysosome-associated phenotypes, phytochemical isolation and a LysoTracker Green assay in HeLa cells were performed. Five previously undescribed jatrophane diterpenoids, Euphjatrophanes M-Q (1-5), together with three known analogues (6-8), were isolated. The structures of 1-5 were assigned from one- and two-dimensional NMR, IR, and UV and the available HR-ESI-MS data, together with a comparison with reported compounds. At 10 and 40 μM, compounds 1, 2, and 4-8 produced higher LysoTracker-associated fluorescence than the DMSO vehicle control, whereas compound 3 showed a small numerical increase at 10 μM and a decrease at 40 μM. Compound 1 gave the largest numerical response (1.76-fold and 3.01-fold at 10 and 40 μM, respectively). These findings provide preliminary cell-based phenotypic evidence of lysosome-modulating activity and require orthogonal validation.