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Identification of a cytochrome P450 from Tripterygium hypoglaucum(Levl.)Hutch that catalyzes polpunonic acid formation in celastrol biosynthesis 被引量:2
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作者 CHEN Xiao-Chao LU Yun +5 位作者 LIU Yuan ZHOU Jia-Wei ZHANG Yi-Feng GAO Hai-Yun LIDan GAO Wei 《Chinese Journal of Natural Medicines》 SCIE CAS CSCD 2022年第9期691-700,共10页
Tripterygium hypoglaucum(Levl.)Hutch,a traditional Chinese medicinal herb with a long history of use,is widely distributed in China.One of its main active components,celastrol,has great potential to be developed into ... Tripterygium hypoglaucum(Levl.)Hutch,a traditional Chinese medicinal herb with a long history of use,is widely distributed in China.One of its main active components,celastrol,has great potential to be developed into anti-cancer and anti-obesity drugs.Although it exhibits strong pharmacological activities,there is a lack of sustainable sources of celastrol and its derivatives,making it crucial to develop novel sources of these drugs through synthetic biology.The key step in the biosynthesis of celastrol is considered to be the cyclization of 2,3-oxidosqualene into friedelin under the catalysis of 2,3-oxidosqualene cyclases.Friedelin was speculated to be oxidized into celastrol by cytochrome P450 oxidases(CYP450s).Here,we reported a cytochrome P450 ThCYP712K1 from Tripterygium hypoglaucum(Levl.)Hutch that catalyzed the oxidation of friedelin into polpuonic acid when heterologously expressed in yeast.Through substrate supplementation and in vitro enzyme analysis,ThCYP712K1 was further proven to catalyze the oxidation of friedelin at the C-29 position to produce polpunonic acid,which is considered a vital step in the biosynthesis of celastrol,and will lay a foundation for further analysis of its biosynthetic pathway. 展开更多
关键词 Tripterygium hypoglaucum Cytochrome P450 polpunonic acid CELASTROL BIOSYNTHESIS
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