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首页> 外文期刊>Journal of Plant Biology >Identification and biosynthesis of C-24 ethylidene brassinosteroids in Arabidopsis thaliana
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Identification and biosynthesis of C-24 ethylidene brassinosteroids in Arabidopsis thaliana

机译:拟南芥C-24乙基芸苔类固醇的鉴定和生物合成

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摘要

Isofucosterol is a major 4-demethylsterol which has an ethylidene group at C-24 in Arabidopsis thaliana. To evaluate the presence of brassinosteroids (BRs) with the same carbon skeleton as that of isofucosterol, a large quantity of A. thaliana was extracted and purified. GC-MS/selected ion monitoring analysis verified that 6-deoxohomodolichosterone and homodolichosterone are present in Arabidopsis. An enzyme solution prepared from wild type Arabidopsis successfully mediated conversion of 6-deoxohomodolichosterone to homodolichosterone. However, a double mutant cyp85a1/cyp85a2 could not catalyze the conversion, implying that in A. thaliana the C-6 oxidation of 6-deoxohomodolichosterone to homodolichosterone seems to be catalyzed by CYP85A1 and/or CYP85A2. In yeast, both heterologously expressed CYP85A1 and CYP85A2 catalyzed the C-6 oxidation of 6- deoxohomodolichosterone to homodolichosterone, but the conversion rate in CYP85A2/V60/WAT21 was significantly higher than that in CYP85A1/V60/WAT21, indicating that C-6 oxidation of 6-deoxohomodolichosterone to homodolichosterone is mainly catalyzed by CYP85A2 in A. thaliana. Taken together, this study strongly suggests that a biosynthetic pathway for the production of 6-deoxohomodolichosterone and homodolichosterone is functional, and CYP85As have important roles in 24-ethylidene biosynthesis in A. thaliana.
机译:Isofucosterol醇是一个主要的4-demethylsterol,其在拟南芥C-24处具有亚乙基基团。为了评估与同学碳骨架的芸苔类固醇(BRS)的存在,因为Isofucosterol醇中,提取并纯化了大量A.拟化。 GC-MS /所选离子监测分析证实了拟南芥中存在6-脱氧ohomodolichosterone和同源噻托酮。从野生型拟南芥制备的酶溶液成功地将6-脱氧洛酮转化为同源酮。然而,双突变体CYP85A1 / CYP85A2不能催化转化率,这意味着在A. Thilana中,将6-脱氧致洛氏酮酮的C-6氧化似乎是CYP85A1和/或CYP85A2催化。在酵母中,异源表达的CYP85A1和CYP85A2催化为Homodolichosterone的C-6氧化,但CYP85A2 / V60 / WAT21中的转化率明显高于CYP85A1 / V60 / WAT21中的转化率,表明C-6氧化6-脱氧洛昔洛酮至同源洛酮中的主要催化剂在A.本地A中的CYP85A2催化。这项研究表明,该研究强烈表明,用于生产6-脱氧洛酮和同源酮的生物合成途径是功能性的,并且CYP85AS在A.拟南芥中的24-亚乙基生物合成中具有重要作用。

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