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通过一种选择性木质素降解真菌——亚侧耳状蜡孔菌从头合成(Z)-和(E)-7-十六碳烯基衣康酸。

De novo synthesis of (Z)- and (E)-7-hexadecenylitaconic acids by a selective lignin-degrading fungus, Ceriporiopsis subvermispora.

作者信息

Nishimura Hiroshi, Tsuda Saeko, Shimizu Hitoe, Ohashi Yasunori, Watanabe Takahito, Honda Yoichi, Watanabe Takashi

机构信息

Laboratory of Biomass Conversion, Research Institute for Sustainable Humanosphere, Kyoto University, Gokasho, Uji, Kyoto 611-0011, Japan.

出版信息

Phytochemistry. 2008 Oct;69(14):2593-602. doi: 10.1016/j.phytochem.2008.07.014. Epub 2008 Oct 4.

Abstract

Ceriporic acids are a class of alk(en)ylitaconic acids produced by a selective lignin-degrading fungus, Ceriporiopsis subvermispora. Their structural units have similarity with biologically important lichen acids, such as chaetomellic and protolichesterinic acids. The unique function of alkylitaconic acid is the redox silencing of the Fenton reaction system by inhibiting reduction of Fe(3+). As estimated by the catalytic function of Delta9-desaturases, 7-hexadecenyl derivatives bearing a trans configuration have not been reported in the family of alk(en)ylitaconic acids, i.e. the structurally similar lichen acids-alk(en)ylcitraconic and paraconic acids. In this paper, we discuss the isolation of an itaconic acid derivative with an (E)-7-hexadecenyl chain from cultures of C. subvermispora. To identify the natural metabolite, (E)- and (Z)-7-hexadecenylitaconic acids were chemically synthesised. The isolated metabolite was identical to the synthetic (E)-hexadecenylitaconic acid and was designated as ceriporic acid D. Administration of (13)C-[U]-glucose demonstrated that ceriporic acid C and trans-7-hexadecenylitaconic acid (ceriporic acid D) were biosynthesised de novo by C. subvermispora.

摘要

蜡孔酸是由一种选择性降解木质素的真菌——亚侧耳状蜡孔菌产生的一类链烯基衣康酸。它们的结构单元与具有重要生物学意义的地衣酸,如枝霉酸和原地衣硬脂酸相似。链烯基衣康酸的独特功能是通过抑制Fe(3+)的还原实现芬顿反应体系的氧化还原沉默。根据Δ9-去饱和酶的催化功能估计,在链烯基衣康酸家族中,即结构相似的地衣酸——链烯基柠康酸和异柠康酸中,尚未报道过具有反式构型的7-十六碳烯基衍生物。在本文中,我们讨论了从亚侧耳状蜡孔菌培养物中分离出一种带有(E)-7-十六碳烯基链的衣康酸衍生物。为鉴定该天然代谢产物,我们化学合成了(E)-和(Z)-7-十六碳烯基衣康酸。分离得到的代谢产物与合成的(E)-十六碳烯基衣康酸相同,并被命名为蜡孔酸D。给予(13)C-[U]-葡萄糖表明,蜡孔酸C和反式-7-十六碳烯基衣康酸(蜡孔酸D)是由亚侧耳状蜡孔菌从头生物合成的。

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