Ministry of Education Key Laboratory of Systems Biomedicine, Shanghai Center for Systems Biomedicine, Shanghai Jiao Tong University, Shanghai 200240, China.
State Key Laboratory of Oncogenes and Related Genes, Shanghai Cancer Institute, Shanghai Jiao Tong University, Shanghai 200240, China.
Sci Rep. 2017 Jan 18;7:40689. doi: 10.1038/srep40689.
Polycyclic tetramate macrolactams (PTMs) were identified as distinct secondary metabolites of the mangrove-derived Streptomyces xiamenensis 318. Together with three known compounds-ikarugamycin (1), capsimycin (2) and capsimycin B (3)-two new compounds, capsimycin C (4) with trans-diols and capsimycin D (5) with trans-configurations at C-13/C-14, have been identified. The absolute configurations of the tert/tert-diols moiety was determined in 4 by NMR spectroscopic analysis, CD spectral comparisons and semi-synthetic method. The post-modification mechanism of the carbocyclic ring at C-14/C-13 of compound 1 in the biosynthesis of an important intermediate 3 was investigated. A putative cytochrome P450 superfamily gene, SXIM_40690 (ikaD), which was proximally localized to the ikarugamycin biosynthetic pathway, was characterized. In vivo gene inactivation and complementation experiment confirmed that IkaD catalysed the epoxide-ring formation reaction and further hydroxylation of ethyl side chain to form capsimycin G (3'). Binding affinities and kinetic parameters for the interactions between ikarugamycin (1) and capsimycin B (3) with IkaD were measured with Surface Plasmon Resonance. The intermediate compound 3' was isolated and identified as 30-hydroxyl-capsimycin B. The caspimycins 2 and 3, were transferred to methoxyl derivatives, 6 and 7, under acidic and heating conditions. Compounds 1-3 exhibited anti-proliferative activities against pancreatic carcinoma with IC values of 1.30-3.37 μM.
多环四肽大环内酯(PTMs)被鉴定为红树林来源的链霉菌厦门 318 的独特次生代谢产物。与三种已知化合物-伊卡鲁霉素(1)、卡西米霉素(2)和卡西米霉素 B(3)-一起,鉴定出两种新化合物,具有反式二醇的卡西米霉素 C(4)和具有 C-13/C-14 反式构型的卡西米霉素 D(5)。通过 NMR 光谱分析、CD 光谱比较和半合成方法确定了 4 中叔/叔二醇部分的绝对构型。研究了 1 在生物合成重要中间体 3 中 C-14/C-13 碳环的后期修饰机制。与伊卡鲁霉素生物合成途径密切相关的假定细胞色素 P450 超家族基因 SXIM_40690(ikaD)被表征。体内基因失活和互补实验证实 IkaD 催化环氧化物环形成反应,并进一步对乙基侧链进行羟化形成卡西米霉素 G(3')。采用表面等离子体共振法测定了伊卡鲁霉素(1)和卡西米霉素 B(3)与 IkaD 相互作用的结合亲和力和动力学参数。分离并鉴定出中间体化合物 3'为 30-羟基卡西米霉素 B。在酸性和加热条件下,将卡西米霉素 2 和 3 转化为甲氧基衍生物 6 和 7。化合物 1-3 对胰腺癌具有抗增殖活性,IC 值为 1.30-3.37 μM。