30 イネ科植物の根が分泌する金属キレーターに関する研究 : ムギネ酸の金属錯体の構造と性質
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概要
- 論文の詳細を見る
Mugineic acid(1), isolated from the roots of water-cultured barley (Hordeum vulgare L. var. Minorimugi), is the first compound to be shown to play a role in the uptake and transport of iron in higher plants. It is capable of effectively solubilizing Fe(OH)_3 within the pH range 4-9. The potentiometric titration, spectroscopic, electrochemical, and X-ray diffraction studies on the mugineic acid-Fe(III) and -Co(III) complexes clarified that in both complexes the coordination involves the azetidine nitrogen, secondary amine nitrogen, both terminal carboxylate oxygen, hydroxyl oxygen, and intermediate carboxylate oxygen in a nearly octahedral configuration (Fig. 1). The structures of Cu(II) and Zn(II) complexes were also elucidated by X-ray crystallographic and PMR studies. The coordinated copper and zinc atoms adopt the teragonally distorted octahedral geometry (Fig. 1). The Mossbauer and ESR parameters for the mugineic acid-Fe(III) complex are typical of high-spin ferric type. The salient feature of the mugineic acid-Fe(III) complex is high reduction potential(E_<1/2>=-102mV vs. NHE), that is, this Fe(III)-complex is thermodinamically readily reducible by physiologically available reductants such as NAD(P)H. Thus, the present results indicate that the mechanism of iron-uptake and -transport in Graminaceous plant involves the excretion of mugineic acid(1) from the roots, which aids Fe(III)-solubilization and reduction of stable Fe(III)-complex (log K=18.1) to the weakly bound Fe(II)-complex (log K=8.1).
- 天然有機化合物討論会の論文
- 1981-09-10
著者
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石田 寿昌
大阪薬大
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竹本 常松
Suntory Institute For Bioorganic Research
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杉浦 幸雄
京大薬
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野本 享資
Suntory Institute for Bioorganic Research
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野本 享資
(財)サントリー生有研
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竹本 常松
(財)サントリー生有研
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吉岡 日女子
(財)サントリー生有研
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三野 芳紀
大阪薬大
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太田 長世
大阪薬大
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井上 正敏
大阪薬大
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田中 久
京大薬
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三野 芳紀
大阪薬科大学
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井上 正敏
Department Of Physical Chemistry Osaka University Of Pharmaceutical Sciences
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太田 長世
Osaka University Of Pharmaceutical Sciences
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