首页> 外文OA文献 >Anthranilate synthase from Ruta graveolens. Duplicated AS alpha genes encode tryptophan-sensitive and tryptophan-insensitive isoenzymes specific to amino acid and alkaloid biosynthesis.
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Anthranilate synthase from Ruta graveolens. Duplicated AS alpha genes encode tryptophan-sensitive and tryptophan-insensitive isoenzymes specific to amino acid and alkaloid biosynthesis.

机译:来自Rutagravolens的邻氨基苯甲酸合酶。重复的AS alpha基因编码对氨基酸和生物碱生物合成具有特异性的色氨酸敏感和色氨酸不敏感同工酶。

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摘要

Anthranilate synthase (AS, EC 4.1.3.27) catalyzes the conversion of chorismate into anthranilate, the biosynthetic precursor of both tryptophan and numerous secondary metabolites, including inducible plant defense compounds. The higher plant Ruta graveolens produces tryptophan and elicitor-inducible, anthranilate-derived alkaloids by means of two differentially expressed nuclear genes for chloroplast-localized AS alpha subunits, AS alpha 1 and AS alpha 2. Mechanisms that partition chorismate between tryptophan and inducible alkaloids thus do not entail chloroplast/cytosol separation of AS isoenzymes and yet might involve differential feedback regulation of pathway-specific AS alpha subunits. The two AS alpha isoenzymes of R. graveolens were expressed as glutathione S-transferase fusion proteins in Escherichia coli deletion mutants defective in AS activity and were purified to homogeneity. Differential sensitivity of the transformed E. coli strains toward 5-methyltryptophan, a false-feedback inhibitor of AS, was demonstrated. Characterization of affinity-purified AS alpha isoenzymes revealed that the noninducible AS alpha 2 of R. graveolens is strongly feedback inhibited by 10 microns tryptophan. In contrast, the elicitor-inducible AS alpha 1 isoenzyme is only slightly affected even by tryptophan concentrations 10-fold higher than those observed in planta. These results are consistent with the hypothesis that chorismate flux into biosynthesis of tryptophan and defense-related alkaloid biosynthesis in R. graveolens is regulated at the site of AS alpha isoenzymes at both genetic and enzymatic levels.
机译:邻氨基苯甲酸合酶(AS,EC 4.1.3.27)可催化分支酸酯转化为邻氨基苯甲酸,后者是色氨酸和许多次生代谢产物(包括可诱导的植物防御化合物)的生物合成前体。高等植物粗粒芸苔通过两个叶绿体定位的ASα亚基AS alpha 1和AS alpha 2的差异表达核基因,产生色氨酸和诱导子诱导的邻氨基苯甲酸生物碱。因此在色氨酸和可诱导生物碱之间分配分支的机制。不需要AS同工酶的叶绿体/胞质分离,而可能涉及途径特异性ASα亚基的差异反馈调节。 R.graveolens的两种ASα同工酶在AS活性缺陷的大肠杆菌缺失突变体中以谷胱甘肽S-转移酶融合蛋白的形式表达,并纯化至同质。证明了转化的大肠杆菌菌株对5-甲基色氨酸(AS的错误反馈抑制剂)的差异敏感性。亲和纯化的ASα同工酶的表征表明,R.gravolens的不可诱导的AS alpha 2受10微米色氨酸强烈反馈抑制。相反,即使色氨酸浓度比在植物中观察到的浓度高10倍,激发子诱导的AS alpha 1同工酶也仅受到轻微影响。这些结果与这样的假设是一致的,即沙门氏菌通向色氨酸的生物合成和防御相关生物碱生物合成的通量在遗传和酶水平上都在ASα同工酶的位点受到调控。

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