Piel Jörn, Hui Dequan, Wen Gaiping, Butzke Daniel, Platzer Matthias, Fusetani Nobuhiro, Matsunaga Shigeki
Department of Bioorganic Chemistry, Max Planck Institute for Chemical Ecology, Hans-Knöll-Strasse 8, Beutenberg Campus, 07745 Jena, Germany.
Proc Natl Acad Sci U S A. 2004 Nov 16;101(46):16222-7. doi: 10.1073/pnas.0405976101. Epub 2004 Nov 1.
Bacterial symbionts have long been suspected to be the true producers of many drug candidates isolated from marine invertebrates. Sponges, the most important marine source of biologically active natural products, have been frequently hypothesized to contain compounds of bacterial origin. This symbiont hypothesis, however, remained unproven because of a general inability to cultivate the suspected producers. However, we have recently identified an uncultured Pseudomonas sp. symbiont as the most likely producer of the defensive antitumor polyketide pederin in Paederus fuscipes beetles by cloning the putative biosynthesis genes. Here we report closely related genes isolated from the highly complex metagenome of the marine sponge Theonella swinhoei, which is the source of the onnamides and theopederins, a group of polyketides that structurally resemble pederin. Sequence features of the isolated genes clearly indicate that it belongs to a prokaryotic genome and should be responsible for the biosynthesis of almost the entire portion of the polyketide structure that is correlated with antitumor activity. Besides providing further proof for the role of the related beetle symbiont-derived genes, these findings raise intriguing ecological and evolutionary questions and have important general implications for the sustainable production of otherwise inaccessible marine drugs by using biotechnological strategies.
长期以来,人们一直怀疑细菌共生体是从海洋无脊椎动物中分离出的许多候选药物的真正生产者。海绵是生物活性天然产物最重要的海洋来源,人们经常假设其含有细菌来源的化合物。然而,由于普遍无法培养可疑的生产者,这种共生体假说一直未得到证实。然而,我们最近通过克隆假定的生物合成基因,确定了一种未培养的假单胞菌属共生体是褐足毒隐翅虫中防御性抗肿瘤聚酮化合物片螺素最可能的生产者。在此,我们报告了从海洋海绵斯氏棘海绵高度复杂的宏基因组中分离出的密切相关基因,斯氏棘海绵是片螺酰胺和片螺素的来源,片螺素是一组在结构上类似于片螺素的聚酮化合物。分离出的基因的序列特征清楚地表明它属于原核基因组,应该负责与抗肿瘤活性相关的几乎整个聚酮化合物结构部分的生物合成。这些发现除了为相关甲虫共生体衍生基因的作用提供进一步证据外,还提出了有趣的生态和进化问题,并对利用生物技术策略可持续生产原本难以获得的海洋药物具有重要的普遍意义。