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天冬酰胺代谢——发育中豆科种子氮营养的关键。

Asparagine metabolism-key to the nitrogen nutrition of developing legume seeds.

机构信息

Department of Botany, University of Western Australia, Nedlands, Western Australia, 6009.

出版信息

Plant Physiol. 1975 Dec;56(6):807-12. doi: 10.1104/pp.56.6.807.

Abstract

Asparagine accounted for 50 to 70% of the nitrogen carried in translocatory channels serving fruit and seed of white lupin (Lupinus albus L.). Rates of supply of the amide always greatly exceeded its incorporation as such into protein. An asparaginase (l-asparagine amido hydrolase EC 3.5.1.1) was demonstrated in crude extracts of seeds. In vitro activity was up to 5 mumoles of aspartate formed per hour per gram fresh weight at the apparent Km(Asn) value of 10 mM, and this more than accounted for the estimated rates of asparagine utilization in vivo. Asparaginase activity per seed increased 10-fold in the period 5 to 7 weeks after anthesis, coinciding with early stages of storage protein synthesis in the cotyledons.Double labeled ((14)C (U), (15)N (amide)) asparagine was fed to fruiting shoots through the transpiration steram. Fruit phloem sap analysis indicated that virtually all of the label was translocated to seeds in the form of asparagine. In young seeds (15)N from asparagine breakdown was traced to the ammonia, glutamine, and alanine of endospermic fluid, the (14)C appearing mainly in nonamino compounds. In the cotyledon-filling stage the C and N of asparagine was contributed to a variety of amino acid residues of protein.

摘要

天冬酰胺占转运通道所携带氮的 50%至 70%,这些通道为白 Lupinus albus L. 的果实和种子提供养分。酰胺的供应率总是远远超过其作为蛋白质的掺入率。粗制种子提取物中存在天冬酰胺酶(l-天冬酰胺酰胺水解酶 EC 3.5.1.1)。在体外,每克鲜重每小时可形成多达 5 微摩尔天冬氨酸,这超过了体内估计的天冬酰胺利用率。在开花后 5 至 7 周的时期内,种子中的天冬酰胺酶活性增加了 10 倍,与子叶中储存蛋白合成的早期阶段相吻合。通过蒸腾流将双标记 ((14)C (U), (15)N (酰胺)) 天冬酰胺喂给结果实的枝条。果实韧皮部汁液分析表明,几乎所有的标记都以天冬酰胺的形式转运到种子中。在年轻的种子中(15)N 来自天冬酰胺的分解,可追踪到胚乳液中的氨、谷氨酰胺和丙氨酸,(14)C 主要出现在非氨基酸化合物中。在子叶填充阶段,天冬酰胺的 C 和 N 被贡献给蛋白质的各种氨基酸残基。

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