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CYP71B15 (PAD3) Catalyzes the Final Step in Camalexin Biosynthesis

机译:CYP71B15(PAD3)催化Camalexin生物合成的最后一步

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摘要

Camalexin represents the main phytoalexin in Arabidopsis (Arabidopsis thaliana). The camalexin-deficient phytoalexin deficient 3 (pad3) mutant has been widely used to assess the biological role of camalexin, although the exact substrate of the cytochrome P450 enzyme 71B15 encoded by PAD3 remained elusive. 2-(Indol-3-yl)-4,5-dihydro-1,3-thiazole-4-carboxylic acid (dihydrocamalexic acid) was identified as likely intermediate in camalexin biosynthesis downstream of indole-3-acetaldoxime, as it accumulated in leaves of silver nitrate-induced pad3 mutant plants and it complemented the camalexin-deficient phenotype of a cyp79b2/cyp79b3 double-knockout mutant. Recombinant CYP71B15 heterologously expressed in yeast catalyzed the conversion of dihydrocamalexic acid to camalexin with preference of the (S)-enantiomer. Arabidopsis microsomes isolated from leaves of CYP71B15-overexpressing and induced wild-type plants were capable of the same reaction but not microsomes from induced leaves of pad3 mutants. In conclusion, CYP71B15 catalyzes the final step in camalexin biosynthesis.
机译:Camalexin代表拟南芥(Arabidopsis thaliana)中的主要植物抗毒素。尽管由PAD3编码的细胞色素P450酶71B15的确切底物仍然难以捉摸,但camalexin缺陷型phyalealexin缺陷型3(pad3)突变体已广泛用于评估camalexin的生物学作用。 2-(Indol-3-yl)-4,5-dihydro-1,3-thiazole-4-羧酸(dihydrocamalexic acid)被认为是吲哚-3-乙醛肟下游camalexin生物合成中的中间体,因为它在硝酸银诱导的pad3突变植物的叶片,并补充了cyp79b2 / cyp79b3双敲除突变体的camalexin缺陷型。在酵母中异源表达的重组CYP71B15催化二氢卡来莫酸转化为卡马新,并具有(S)-对映体的优势。从过表达CYP71B15的叶片和诱导的野生型植物中分离得到的拟南芥微粒体能够进行相同的反应,但从pad3突变体的诱导叶片中不能产生微粒体。总之,CYP71B15催化Camalexin生物合成的最后一步。

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