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Terminal Olefin (1-Alkene) Biosynthesis by a Novel P450 Fatty Acid Decarboxylase from Jeotgalicoccus Species

机译:新型球菌种P450脂肪酸脱羧酶合成末端烯烃(1-烯烃)

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Terminal olefins (1-alkenes) are natural products that have important industrial applications as both fuels and chemicals. However, their biosynthesis has been largely unexplored. We describe a group of bacteria, Jeotgalicoccus spp., which synthesize terminal olefins, in particular 18-methyl-1-nonadecene and 17-methyl-1-nonadecene. These olefins are derived from intermediates of fatty acid biosynthesis, and the key enzyme in Jeotgalicoccus sp. ATCC 8456 is a terminal olefin-forming fatty acid decarboxylase. This enzyme, Jeotgalicoccus sp. OleT (OleT_(JE)), was identified by purification from cell lysates, and its encoding gene was identified from a draft genome sequence of Jeotgalicoccus sp. ATCC 8456 using reverse genetics. Heterologous expression of the identified gene conferred olefin biosynthesis to Escherichia coli. OleT_(JE) is a P450 from the cyp152 family, which includes bacterial fatty acid hydroxylases. Some cyp152 P450 enzymes have the ability to decarboxylate and to hydroxylate fatty acids (in α- and/or β-position), suggesting a common reaction intermediate in their catalytic mechanism and specific structural determinants that favor one reaction over the other. The discovery of these terminal olefin-forming P450 enzymes represents a third biosynthetic pathway (in addition to alkane and long-chain olefin biosynthesis) to convert fatty acid intermediates into hydrocarbons. Olefin-forming fatty acid decarboxylation is a novel reaction that can now be added to the catalytic repertoire of the versatile cytochrome P450 enzyme family.
机译:末端烯烃(1-烯烃)是天然产物,具有重要的工业应用,既可以用作燃料,也可以用作化学品。然而,它们的生物合成尚未被充分探索。我们描述了一组细菌,Jetotgaliccus spp。,它们合成末端烯烃,特别是18-甲基-1-壬二烯和17-甲基-1-壬二烯。这些烯烃衍生自脂肪酸生物合成的中间体,以及Jeotgalicoccus sp。中的关键酶。 ATCC 8456是形成末端烯烃的脂肪酸脱羧酶。这种酶,Jeotgalicoccus sp。通过从细胞裂解物中纯化来鉴定OleT(OleT_(JE)),并从Jeogalicoccus sp。的基因组序列草案中鉴定出其编码基因。 ATCC 8456使用反向遗传学。所鉴定基因的异源表达使烯烃生物合成到大肠杆菌中。 OleT_(JE)是cyp152家族的P450,包括细菌性脂肪酸羟化酶。一些cyp152 P450酶具有使脂肪酸脱羧和羟化(在α和/或β位置)的能力,这表明它们的催化机理是常见的反应中间体,并且特定的结构决定因素有利于一个反应优于另一个反应。这些末端形成烯烃的P450酶的发现代表了第三种生物合成途径(除了烷烃和长链烯烃的生物合成),可将脂肪酸中间体转化为碳氢化合物。形成烯烃的脂肪酸脱羧是一种新型反应,现在可以添加到通用细胞色素P450酶家族的催化库中。

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