The biosynthesis of folic acid compounds in plants. V. Reaction mechanism of the dihydropteroate-synthesizing enzyme from pea seedlings.

O. Okinaka, K. Iwai
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引用次数: 22

Abstract

Cell-free extracts of pea seedlings contain the enzyme system which catalyzes the formation of folate compounds from 2-amino-4-hydroxy-6-substituted pteridines and p-aminobenzoic acid or p-aminobenzoylglutamic acid. Active pteridines were 2-amino-4-hydroxy-6-hydroxymethyldihydropteridine and its pyrophosphate ester, i.e., 2-amino-4-hydroxy-6-pyrophosphorylmethyldihydropteridine, and a considerable amount of folate compound was formed enzymatically from the latter compound in the presence of Mg2+ as a cofactor, whereas the less amount was formed from the former in the presence of both ATP and Mg2+. The products were characterized, by a bioautographic technique, as dihydropteroic acid and dihydrofolic acid from p-aminobenzoic acid and p-aminobenzoylglutamic acid, respectively, in the presence of pyrophosphorylmethyldihydropteridine. In the enzymatic reaction, p-aminobenzoic acid was more active as substrate than p-aminobenzoylglutamic acid. When p-aminobenzoic acid and L-glutamic acid were used in place of p-aminobenzoic acid in the enzyme system, dihydropteroic acid and dihydrofolic acid were formed in the presence of the pteridine, ATP and Mg2+. From these results presented, the following pathway for the biosynthesis of folate compounds in plants was proposed:
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植物中叶酸化合物的生物合成。五、豌豆幼苗二氢蝶呤合成酶的反应机理。
豌豆幼苗的无细胞提取物含有催化2-氨基-4-羟基-6取代翼啶和对氨基苯甲酸或对氨基苯甲酰谷氨酸形成叶酸化合物的酶系统。活性蝶啶是2-氨基-4-羟基-6-羟甲基二氢蝶啶及其焦磷酸酯,即2-氨基-4-羟基-6-焦磷酸基甲基二氢蝶啶,后者在Mg2+作为辅因子存在下酶促生成相当数量的叶酸化合物,而前者在ATP和Mg2+存在下酶促生成较少数量的叶酸化合物。在焦磷酸甲基二氢蝶啶存在下,用生物自显影技术分别从对氨基苯甲酸和对氨基苯甲酰谷氨酸中分离得到二氢蝶酸和二氢叶酸。在酶促反应中,对氨基苯甲酸作为底物的活性高于对氨基苯甲酰谷氨酸。在酶体系中用对氨基苯甲酸和l -谷氨酸代替对氨基苯甲酸时,在蝶啶、ATP和Mg2+存在下生成二氢苯甲酸和二氢叶酸。根据这些结果,提出了植物体内叶酸化合物的生物合成途径:
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A new method of activity-staining for flavin-containing oxidase and some properties of the enzymes obtained with this technique. Effect of pantothenic acid deficiency on lipid metabolism in yeast. II. Influence of pantothenic acid deficiency on neutral fats and phospholipids. Metabolic fate and mechanism of action of chloroethylthiamine. VI. Mechanism of anticoccidial action of chloroethylthiamine. Some studies on the formation in vivo of pyridoxal phosphate in rats receiving high-fat diet. Action of different fats and linoleic acid on biosynthesis of niacin in rats.
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