College of Food Science and Technology, Nanjing Agricultural University, Nanjing, 210095, People's Republic of China.
Biotechnol Lett. 2023 Aug;45(8):981-991. doi: 10.1007/s10529-023-03373-z. Epub 2023 Jun 2.
The importance of thioesterase domains on bacillomycin D synthesis and the ability of different thioesterase domains to selectively recognize and catalyze peptide chain hydrolysis and cyclization were studied by deleting and substituting thioesterase domains.
No bacillomycin D analogs were found in the thioesterase-deleted strain fmbJ-ΔTE, indicating that the TE domain was essential for bacillomycin D synthesis. Then the thioesterase in bacillomycin D synthetases was replaced by the thioesterase in bacillomycin F, iturin A, mycosubtilin, plipastatin and surfactin synthetases. Except for fmbJ-S-TE, all others were able to synthesize bacillomycin D homologs because a suitable recombination site was selected, which maintained the integrity of NRPSs. In particular, the yield of bacillomycin D in fmbJ-IA-TE, fmbJ-M-TE and fmbJ-P-TE was significantly increased.
This study expands our understanding of the TE domain in bacillomycin D synthetases and shows that thioesterase has excellent potential in the chemical-enzymatic synthesis of natural products or their analogs.
通过删除和替换硫酯酶结构域,研究了硫酯酶结构域对杆菌霉素 D 合成的重要性以及不同硫酯酶结构域对肽链水解和环化的选择性识别和催化能力。
在硫酯酶缺失菌株 fmbJ-ΔTE 中未发现杆菌霉素 D 类似物,表明 TE 结构域是杆菌霉素 D 合成所必需的。然后,将杆菌霉素 D 合成酶中的硫酯酶替换为杆菌霉素 F、伊枯草菌素、枯草菌素、普里瓦他汀和表面活性剂合成酶中的硫酯酶。除了 fmbJ-S-TE 之外,其他所有酶都能够合成杆菌霉素 D 类似物,因为选择了合适的重组位点,从而保持了 NRPSs 的完整性。特别是,在 fmbJ-IA-TE、fmbJ-M-TE 和 fmbJ-P-TE 中杆菌霉素 D 的产量显著增加。
本研究扩展了我们对杆菌霉素 D 合成酶中 TE 结构域的认识,并表明硫酯酶在天然产物或其类似物的化学-酶合成中具有巨大的潜力。