Scripps Institution of Oceanography, University of California, San Diego, La Jolla, CA 92093, USA.
Org Biomol Chem. 2019 Mar 27;17(13):3416-3423. doi: 10.1039/c8ob03109f.
Thiotetronate-containing natural products, including thiolactomycin, thiotetromycin, and thiotetroamide, are potent, broad-spectrum antibacterial compounds that target fatty acid synthesis in bacteria. Natural modifications at the C-5 dialkyl position in this molecular series result in pronounced bioactivity differences. The C-5 acetamide-containing thiotetroamide, which is the more potent antibacterial agent in this family, is biosynthesized from the C-5 ethyl analogue thiotetromycin via a unique two-enzyme process involving the cytochrome P450-amidotransferase enzyme pair TtmP-TtmN. Herein we synthesized a focused library of 17 novel thiotetromycin derivatives differing at the 5-position alkyl substituent to investigate their biological activities and their reactivity towards the hydroxylase TtmP. Although we observed marginal anti-tuberculosis activity, select thiotetromycin analogues showed antibacterial activity against an Escherichia coli ΔtolC strain with IC50 values in a range of 1.9-36 μg mL-1. Additional screening efforts highlighted select thiotetronate analogues as inhibitors of the cancer-associated enzyme nicotinamide N-methyltransferase (NNMT), with a unique scaffold compared to previously identified NNMT inhibitors. In vitro assays further showed that the TtmP P450 was capable of resolving racemic substrate mixtures and had modest promiscuity to hydroxylate derivatives with variable alkyl chains; however triple oxidation to a carboxylic acid remained specific for the natural thiotetromycin substrate. The tendency of TtmP to accept a range of unnatural substrates for hydroxylation makes it an interesting target for P450 engineering towards broader applications.
含硫代四唑的天然产物,包括硫醇霉素、硫代四霉素和硫代四酰胺,是针对细菌脂肪酸合成的强效、广谱抗菌化合物。该分子系列中 C-5 二烷基位置的天然修饰导致显著的生物活性差异。在这个家族中,C-5 乙酰基取代的硫代四酰胺是更有效的抗菌剂,它是通过涉及细胞色素 P450-酰胺转移酶酶对 TtmP-TtmN 的独特双酶过程,从 C-5 乙基类似物硫代四霉素生物合成而来。在此,我们合成了一个包含 17 种新型硫代四霉素衍生物的重点文库,这些衍生物在 5 位烷基取代基上有所不同,以研究它们的生物学活性及其对羟化酶 TtmP 的反应性。尽管我们观察到了轻微的抗结核活性,但选择的硫代四霉素类似物对大肠杆菌 ΔtolC 菌株具有抗菌活性,IC50 值在 1.9-36 μg mL-1 范围内。进一步的筛选工作突出了一些硫代四唑类似物作为癌症相关酶烟酰胺 N-甲基转移酶(NNMT)的抑制剂,与以前鉴定的 NNMT 抑制剂相比具有独特的骨架。体外测定进一步表明,TtmP P450 能够解析外消旋底物混合物,并且对具有可变烷基链的衍生物具有适度的混杂性;然而,三氧化为羧酸仍然是天然硫代四霉素底物特异性的。TtmP 接受一系列用于羟化的非天然底物的趋势使其成为 P450 工程的一个有趣目标,以实现更广泛的应用。