Larsen Kristofer, Petersen Dirk, Wilkins Alistair L, Samdal Ingunn A, Sandvik Morten, Rundberget Thomas, Goldstone David, Arcus Vickery, Hovgaard Peter, Rise Frode, Rehmann Nils, Hess Philipp, Miles Christopher O
Department of Chemistry, University of Oslo, P.O. Box 1033 Blindern, NO-0315 Oslo, Norway.
Chem Res Toxicol. 2007 Jun;20(6):868-75. doi: 10.1021/tx700016m. Epub 2007 Apr 25.
Okadaic acid analogues are well known as protein phosphatase inhibitors and occur naturally in marine shellfish feeding on dinoflagellates of the genus Dinophysis, leading to diarrhetic shellfish poisoning of shellfish consumers. Knowledge of the correct structures for these toxins is important in understanding their toxicology, biochemistry, and biosynthesis. We have performed extensive NMR analyses on okadaic acid (1), dinophysistoxin-1 (DTX-1), and dinophysistoxin-2 (DTX-2) obtained from natural sources. Consequently, we were able to unambiguously deduce the stereochemistries at C-35 for DTX-1 and DTX-2 based on analysis of NMR coupling constants and NOE interactions. Our results revealed that DTX-2 (3) has a stereochemistry opposite to that of DTX-1 (2) at C-35. Molecular modeling of the docking of 1-3 with protein phosphatase-1 and protein phosphatase 2A (PP2A) suggested that the reduced affinity of DTX-2 for PP2A may be due to the newly defined stereochemistry at the 35-methyl group. The implications of these findings for biosynthesis and toxicology are discussed.
冈田酸类似物作为蛋白质磷酸酶抑制剂而广为人知,它们天然存在于以鳍藻属双鞭毛藻为食的海洋贝类中,会导致食用贝类的消费者发生腹泻性贝类中毒。了解这些毒素的正确结构对于理解它们的毒理学、生物化学和生物合成至关重要。我们对从天然来源获得的冈田酸(1)、鳍藻毒素-1(DTX-1)和鳍藻毒素-2(DTX-2)进行了广泛的核磁共振分析。因此,基于对核磁共振耦合常数和核Overhauser效应(NOE)相互作用的分析,我们能够明确推断出DTX-1和DTX-2在C-35处的立体化学结构。我们的结果表明,DTX-2(3)在C-35处的立体化学结构与DTX-1(2)相反。对1-3与蛋白磷酸酶-1和蛋白磷酸酶2A(PP2A)进行对接的分子模拟表明,DTX-2对PP2A亲和力降低可能是由于35-甲基处新确定的立体化学结构。本文讨论了这些发现对生物合成和毒理学的意义。