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An Unusual Skeletal Rearrangement in the Biosynthesis of the Sesquiterpene Trichobrasilenol from Trichoderma
Authors:Keiichi Murai  Lukas Lauterbach  Kazuya Teramoto  Zhiyang Quan  Lena Barra  Tsuyoshi Yamamoto  Kenichi Nonaka  Kazuro Shiomi  Makoto Nishiyama  Tomohisa Kuzuyama  Jeroen S. Dickschat
Abstract:The skeletons of some classes of terpenoids are unusual in that they contain a larger number of Me groups (or their biosynthetic equivalents such as olefinic methylene groups, hydroxymethyl groups, aldehydes, or carboxylic acids and their derivatives) than provided by their oligoprenyl diphosphate precursor. This is sometimes the result of an oxidative ring‐opening reaction at a terpene‐cyclase‐derived molecule containing the regular number of Me group equivalents, as observed for picrotoxan sesquiterpenes. In this study a sesquiterpene cyclase from Trichoderma spp. is described that can convert farnesyl diphosphate (FPP) directly via a remarkable skeletal rearrangement into trichobrasilenol, a new brasilane sesquiterpene with one additional Me group equivalent compared to FPP. A mechanistic hypothesis for the formation of the brasilane skeleton is supported by extensive isotopic labelling studies.
Keywords:biosynthesis  enzyme mechanisms  isotopes  NMR spectroscopy  terpenes
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