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Identification of a new curcumin synthase from ginger and construction of a curcuminoid-producing unnatural fusion protein diketide-CoA synthase::curcumin synthase

机译:从姜中鉴定一种新的姜黄素合酶,并构建产生姜黄素的非天然融合蛋白二酮化合物-CoA合酶::姜黄素合酶

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摘要

The biosynthesis and metabolic engineering of curcuminoids received considerable attention for their important pharmaceutical properties. In the present study, a new curcumin synthase (ZoCURS) was identified from ginger (Zingiber officinale). Notably, ZoCURS efficiently accepts 3-(4-hydroxyphenyl) propionyl-CoA to produce tetrahydrobisdemethoxycurcumin, which would be meaningful to further understand the biosynthesis of curcuminoids in ginger. In addition, a curcuminoid-producing unnatural fusion protein diketide-CoA synthase::curcumin synthase (DCS::CURS) was constructed. Comparing to ZoCURS, DCS::CURS indicated similar substrate specificities and catalytic potentials to catalyze the formation of various curcuminoids, however, the yield of curcuminoids produced by DCS::CURS was obviously increased, which would be useful for metabolic engineering of pharmaceutically important curcuminoid analogs, particularly including asymmetric dihydrocurcuminoids such as 3-(4-hydroxyphenyl) propionyl-feruloylmethane, 3-(4-hydroxyphenyl) propionyl-p-coumaroylmethane, and 3(4-hydroxyphenyl) propionyl-cinnamoylmethane.
机译:姜黄素的生物合成和代谢工程因其重要的药物特性而备受关注。在本研究中,从姜(姜)中鉴定了一种新的姜黄素合酶(ZoCURS)。值得注意的是,ZoCURS有效地接受了3-(4-羟苯基)丙酰辅酶A生成四氢双去甲氧基姜黄素,这对于进一步了解姜中姜黄素的生物合成意义重大。另外,构建了产生姜黄素的非天然融合蛋白双酮化合物-CoA合酶::姜黄素合酶(DCS :: CURS)。与ZoCURS相比,DCS :: CURS具有相似的底物特异性和催化潜力,可催化各种姜黄素的形成,但是,DCS :: CURS产生的姜黄素的产率明显提高,这对药学上重要的姜黄素的代谢工程很有用类似物,特别包括不对称的二氢姜黄素,例如3-(4-羟基苯基)丙酰基-阿魏酰甲烷,3-(4-羟基苯基)丙酰基-对-香豆酰甲烷和3(4-羟基苯基)丙酰基-肉桂酰基甲烷。

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