Life Sciences Institute, University of Michigan, Ann Arbor, Michigan 48109, USA.
J Am Chem Soc. 2011 Sep 21;133(37):14492-5. doi: 10.1021/ja204716f. Epub 2011 Aug 25.
Cryptophycins (Crp) are a group of cyanobacterial depsipeptides with activity against drug-resistant tumors. Although they have been shown to be promising, further efforts are required to return these highly potent compounds to the clinic through a new generation of analogues with improved medicinal properties. Herein, we report a chemosynthetic route relying on the multifunctional enzyme CrpD-M2 that incorporates a 2-hydroxy acid moiety (unit D) into Crp analogues. CrpD-M2 is a unique non-ribosomal peptide synthetase (NRPS) module comprised of condensation-adenylation-ketoreduction-thiolation (C-A-KR-T) domains. We interrogated A-domain 2-keto and 2-hydroxy acid activation and loading, and KR domain activity in the presence of NADPH and NADH. The resulting 2-hydroxy acid was elongated with three synthetic Crp chain elongation intermediate analogues through ester bond formation catalyzed by CrpD-M2 C domain. Finally, the enzyme-bound seco-Crp products were macrolactonized by the Crp thioesterase. Analysis of these sequential steps was enabled through LC-FTICR-MS of enzyme-bound intermediates and products. This novel chemoenzymatic synthesis of Crp involves four sequential catalytic steps leading to the incorporation of a 2-hydroxy acid moiety in the final chain elongation intermediate. The presented work constitutes the first example where a NRPS-embedded KR domain is employed for assembly of a fully elaborated natural product, and serves as a proof-of-principle for chemoenzymatic synthesis of new Crp analogues.
隐色菌素(Crp)是一组具有抗耐药肿瘤活性的蓝藻衍生的环二肽。尽管它们已被证明具有很大的潜力,但仍需要通过新一代具有改善药用特性的类似物将这些高活性化合物重新推向临床。在此,我们报告了一种依赖多功能酶 CrpD-M2 的化学合成途径,该酶将 2-羟基酸部分(单元 D)掺入 Crp 类似物中。CrpD-M2 是一种独特的非核糖体肽合成酶(NRPS)模块,由缩合-腺苷酸化-酮还原-硫醇化(C-A-KR-T)结构域组成。我们研究了 A 结构域 2-酮和 2-羟基酸的激活和加载,以及在 NADPH 和 NADH 存在下 KR 结构域的活性。生成的 2-羟基酸通过 CrpD-M2 C 结构域催化的酯键形成与三种合成的 Crp 链延伸中间体类似物进行延伸。最后,酶结合的 seco-Crp 产物通过 Crp 硫酯酶进行大环内酯化。通过酶结合中间体和产物的 LC-FTICR-MS 分析了这些连续步骤。这种 Crp 的新型化学酶合成涉及四个连续的催化步骤,导致最终的链延伸中间体中掺入 2-羟基酸部分。所提出的工作代表了第一个将嵌入 NRPS 的 KR 结构域用于组装完全成熟的天然产物的实例,并为新 Crp 类似物的化学酶合成提供了原理证明。