College of Food Science and Technology, Nanjing Agricultural University, Key Laboratory of Food Processing and Quality Control, Ministry of Agriculture of China, 1 Weigang Nanjing 210095, P.R. China.
College of Life Science, Nanjing Agricultural University, Ministry of Agriculture of China, 1 Weigang Nanjing 210095, P.R. China.
Sci Rep. 2016 Dec 23;6:38467. doi: 10.1038/srep38467.
Non-ribosomal peptide synthetases (NRPSs) are large enzymatic complexes that catalyse the synthesis of biologically active peptides in microorganisms. Genetic engineering has recently been applied to reprogram NRPSs to produce lipopeptides with a new sequence. The carboxyl-terminal thioesterase (TE) domains from NRPSs catalyse cleavage products by hydrolysis or complex macrocyclization. In this study, we modified plipastatin synthetase by moving the intrinsic TE region to the end of the internal thiolation (T) domains, thus generating Bacillus subtilis strains that could produce new truncated cyclic or linear peptides of the predicted sequence, which further provided an important insight into the regioselectivity of plipastatin TE. The TE was capable of recognizing and catalysing the lactone formation between -Try with the last few residues -Pro7 and -Gln8 at the C-terminus. Additionally, the unmatched linkers connecting the TE region and T domain resulted in nonproduction strains, suggesting that the native T-TE linker is necessary and sufficient for the TE domain to release the products from the hybrid enzymes. This is the first report to demonstrate truncated cyclic lipopeptides production and module skipping by simply moving the TE domain forward in an NRPS system.
非核糖体肽合成酶(NRPSs)是一种大型酶复合物,能够在微生物中催化生物活性肽的合成。遗传工程最近被应用于重新编程 NRPSs,以产生具有新序列的脂肽。NRPS 中的羧基末端硫酯酶(TE)结构域通过水解或复杂的大环化催化裂解产物。在这项研究中,我们通过将内在 TE 区域移动到内部硫醇化(T)结构域的末端来修饰 plipastatin 合成酶,从而生成能够产生新的预测序列截断环状或线性肽的枯草芽孢杆菌菌株,这进一步深入了解了 plipastatin TE 的区域选择性。TE 能够识别并催化 -Try 与 C 末端最后几个残基 -Pro7 和 -Gln8 之间的内酯形成。此外,连接 TE 区域和 T 结构域的不匹配接头导致非生产菌株,这表明天然的 T-TE 接头对于 TE 结构域从杂合酶中释放产物是必要且充分的。这是第一个报告,通过简单地将 TE 结构域向前移动到 NRPS 系统中,展示了截断环状脂肽的生产和模块跳过。