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手性光学方法在确定天然产物绝对构型中的重要性和难点:以 Diplodia corticola 产生的植物毒性吡喃酮和呋喃酮为例。

Importance and Difficulties in the Use of Chiroptical Methods to Assign the Absolute Configuration of Natural Products: The Case of Phytotoxic Pyrones and Furanones Produced by Diplodia corticola.

机构信息

Dipartimento di Medicina Molecolare e Traslazionale, Università degli Studi di Brescia , Viale Europa 11, 25123 Brescia, Italy.

Dipartimento di Scienze Chimiche, Università di Napoli Federico II, Complesso Universitario Monte S. Angelo , Via Cintia 4, 80126 Napoli, Italy.

出版信息

J Nat Prod. 2017 Sep 22;80(9):2406-2415. doi: 10.1021/acs.jnatprod.7b00119. Epub 2017 Sep 13.

Abstract

α-Pyrones and furanones are metabolites produced by Diplodia corticola, a pathogen of cork oak. Previously, the absolute configuration (AC) of diplopyrone was defined by chiroptical methods and Mosher's method. Using X-ray and chiroptical methods, the AC of sapinofuranone C was assigned, while that of the (4S,5S)-enantiomer of sapinofuranone B was established by enantioselective total synthesis. Diplofuranone A and diplobifuranylones A-C ACs are still unassigned. Here electronic and vibrational circular dichroism (ECD and VCD) and optical rotatory dispersion (ORD) spectra are reported and compared with density functional theory computations. The AC of the (4S,5S)-enantiomer of sapinofuranone B and sapinofuranone C is checked for completeness. The AC of diplobifuranylones A-C is assigned as (2S,2'S,5'S,6'S), (2S,2'R,5'S,6'R), and (2S,2'S,5'R,6'R), respectively, with the Mosher's method applied to define the absolute configuration of the carbinol stereogenic carbon. The AC assignment of sapinofuranones is problematic: while diplofuranone A is (4S,9R), sapinofuranones B and C are (4S,5S) according to ORD and VCD, but not to ECD. To eliminate these ambiguities, ECD and VCD spectra of a di-p-bromobenzoate derivative of sapinofuranone C are measured and calculated. For phytotoxicity studies, it is relevant that all six compounds share the S configuration for the stereogenic carbon atom of the lactone moiety.

摘要

α-吡喃酮和呋喃酮是栓皮栎病原菌 Diplodia corticola 产生的代谢产物。以前,通过手性光学方法和 Mosher 法确定了二吡喃酮的绝对构型 (AC)。使用 X 射线和手性光学方法,确定了 sapinofuranone C 的 AC,而 sapinofuranone B 的(4S,5S)-对映异构体的 AC 则通过对映选择性全合成确定。Diplofuranone A 和 diplobifuranylones A-C 的 AC 仍未确定。在这里,报道了电子和振动圆二色性 (ECD 和 VCD) 和旋光色散 (ORD) 光谱,并与密度泛函理论计算进行了比较。检查了 sapinofuranone B 和 sapinofuranone C 的(4S,5S)-对映异构体的 AC 是否完整。确定了 diplobifuranylones A-C 的 AC 分别为(2S,2'S,5'S,6'S)、(2S,2'R,5'S,6'R)和(2S,2'S,5'R,6'R),并用 Mosher 法定义了手性碳原子的绝对构型Carbinol。Sapinofuranones 的 AC 分配存在问题:虽然 diplofuranone A 是(4S,9R),但根据 ORD 和 VCD,sapinofuranones B 和 C 是(4S,5S),但根据 ECD 不是。为了消除这些歧义,测量并计算了 sapinofuranone C 的二对溴苯甲酸酯衍生物的 ECD 和 VCD 光谱。对于植物毒性研究,所有六种化合物的内酯部分手性碳原子都具有 S 构型是相关的。

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