Feng Ye, Xinyu Ma, Zhan Li, Yanrong Shi, Xiaochun Zhang, Yanjiao Ding, Chunhua Lu, Yaoyao Li, Gang Lu, Yuemao Shen
Rifamycins display structural diversity and broad bioactivities, with the intrinsic reactivity of their polyketide chain and quinone ring providing a foundation for photochemical reactions. Herein, we constructed the mutant strain Δrif-orf3_16::rifR+rif-orf19 by deleting post-PKS modification genes of rifamycin, yielding 34a-deoxyrifamycin W (1a) and its derivatives (2a-4a). Subsequent sunlight irradiation of these compounds triggered an intramolecular Paternò-Büchi reaction coupled with Michael addition, producing oxetane-rifamycins A-D (1b-4b). They feature a unique 4/6/6/6/6/17 hexacyclic scaffold and exhibit potent anti-MRSA activity. Density functional theory (DFT) calculations elucidated the formation mechanism of the oxetane-rifamycin scaffold.