Institut für Organische Chemie, Technische Universität Braunschweig, Hagenring 30, 38106 Braunschweig, Germany.
Beilstein J Org Chem. 2011;7:1697-712. doi: 10.3762/bjoc.7.200. Epub 2011 Dec 20.
The volatiles released by Micromonospora aurantiaca were collected by means of a closed-loop stripping apparatus (CLSA) and analysed by GC-MS. The headspace extracts contained more than 90 compounds from different classes. Fatty acid methyl esters (FAMEs) comprised the major compound class including saturated unbranched, monomethyl and dimethyl branched FAMEs in diverse structural variants: Unbranched, α-branched, γ-branched, (ω-1)-branched, (ω-2)-branched, α- and (ω-1)-branched, γ- and (ω-1)-branched, γ- and (ω-2)-branched, and γ- and (ω-3)-branched FAMEs. FAMEs of the last three types have not been described from natural sources before. The structures for all FAMEs have been suggested based on their mass spectra and on a retention index increment system and verified by the synthesis of key reference compounds. In addition, the structures of two FAMEs, methyl 4,8-dimethyldodecanoate and the ethyl-branched compound methyl 8-ethyl-4-methyldodecanoate were deduced from their mass spectra. Feeding experiments with isotopically labelled [(2)H(10)]leucine, [(2)H(10)]isoleucine, [(2)H(8)]valine, [(2)H(5)]sodium propionate, and [methyl-(2)H(3)]methionine demonstrated that the responsible fatty acid synthase (FAS) can use different branched and unbranched starter units and is able to incorporate methylmalonyl-CoA elongation units for internal methyl branches in various chain positions, while the methyl ester function is derived from S-adenosyl methionine (SAM).
橙色分枝杆菌释放的挥发物通过闭路提取装置(CLSA)收集,并通过 GC-MS 进行分析。顶空提取物包含来自不同类别的 90 多种化合物。脂肪酸甲酯(FAMEs)构成主要化合物类别,包括不同结构变体的饱和无支链、单甲基和二甲基支链 FAME:无支链、α-支链、γ-支链、(ω-1)-支链、(ω-2)-支链、α-和(ω-1)-支链、γ-和(ω-1)-支链、γ-和(ω-2)-支链和γ-和(ω-3)-支链 FAME。前三种类型的 FAMEs以前没有从天然来源描述过。所有 FAME 的结构都是根据它们的质谱、保留指数增量系统以及通过关键参考化合物的合成来提出的。此外,两种 FAME 的结构,即 4,8-二甲基十二烷酸甲酯和乙基支链化合物甲基 8-乙基-4-甲基十二烷酸甲酯,是从它们的质谱推断出来的。用同位素标记的 [(2)H(10)]亮氨酸、[(2)H(10)]异亮氨酸、[(2)H(8)]缬氨酸、[(2)H(5)]丙酸钠和 [甲基-(2)H(3)]蛋氨酸进行的喂养实验表明,负责的脂肪酸合酶(FAS)可以使用不同的支链和无支链起始单元,并能够将甲基丙二酰辅酶 A 延伸单元掺入各种链位置的内部甲基支链,而甲酯功能则来自 S-腺苷甲硫氨酸(SAM)。