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An Aromatic Farnesyltransferase Functions in Biosynthesis of the Anti-HIV Meroterpenoid Daurichromenic Acid

机译:芳基法尼基转移酶在抗艾滋病毒类萜类胡萝卜素的生物合成中的作用

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摘要

Rhododendron dauricum produces daurichromenic acid, an anti-HIV meroterpenoid, via oxidative cyclization of the farnesyl group of grifolic acid. The prenyltransferase (PT) that synthesizes grifolic acid is a farnesyltransferase in plant specialized metabolism. In this study, we demonstrated that the isoprenoid moiety of grifolic acid is derived from the 2-C-methyl-d-erythritol-4-phosphate pathway that takes place in plastids. We explored candidate sequences of plastid-localized PT homologs and identified a cDNA for this PT, RdPT1, which shares moderate sequence similarity with known aromatic PTs. RdPT1 is expressed exclusively in the glandular scales, where daurichromenic acid accumulates. In addition, the gene product was targeted to plastids in plant cells. The recombinant RdPT1 regiospecifically synthesized grifolic acid from orsellinic acid and farnesyl diphosphate, demonstrating that RdPT1 is the farnesyltransferase involved in daurichromenic acid biosynthesis. This enzyme strictly preferred orsellinic acid as a prenyl acceptor, whereas it had a relaxed specificity for prenyl donor structures, also accepting geranyl and geranylgeranyl diphosphates with modest efficiency to synthesize prenyl chain analogs of grifolic acid. Such a broad specificity is a unique catalytic feature of RdPT1 that is not shared among secondary metabolic aromatic PTs in plants. We discuss the unusual substrate preference of RdPT1 using a molecular modeling approach. The biochemical properties as well as the localization of RdPT1 suggest that this enzyme produces meroterpenoids in glandular scales cooperatively with previously identified daurichromenic acid synthase, probably for chemical defense on the surface of R. dauricum plants.
机译:杜鹃花杜鹃花通过谷氨酸的法呢基基团的氧化环化反应生成抗艾滋病毒的金属萜烯色氨酸。合成戊二酸的异戊二烯基转移酶(PT)是植物专门代谢中的法呢基转移酶。在这项研究中,我们证明了谷氨酸的类异戊二烯部分源自质体中发生的2-C-甲基-d-赤藓糖醇-4-磷酸途径。我们探索了质体定位的PT同源物的候选序列,并确定了该PT的cDNA RdPT1,它与已知的芳香族PT具有中等的序列相似性。 RdPT1仅在腺酸中表达,在那里金红铬酸会积累。另外,该基因产物靶向植物细胞中的质体。重组RdPT1由奥来酸和法呢基二磷酸区域特异性合成的谷氨酸,证明RdPT1是参与金刚铬酸生物合成的法呢基转移酶。该酶严格优选奥来酸作为异戊二烯基受体,而它对异戊二烯供体结构具有宽松的特异性,还以适度的效率接受香叶基香叶基和香叶基香叶基香叶基二磷酸来合成三叶酸的异戊二烯链类似物。如此广泛的特异性是RdPT1的独特催化功能,在植物的次生代谢芳香族PT之间没有共享。我们使用分子建模方法讨论了RdPT1对底物的不同寻常偏好。生化特性以及RdPT1的定位表明,该酶与先前鉴定出的菊红酸合酶协同作用,在腺体上产生了类戊二烯类化合物,可能是为了对菊苣植物的表面进行化学防御。

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