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Purification and characterization of an iron-induced ferritin from soybean (Glycine max) cell suspensions.

机译:从大豆(Glycine max)细胞悬液中铁诱导的铁蛋白的纯化和鉴定。

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摘要

Ferric citrate induces ferritin synthesis and accumulation in soybean (Glycine max) cell suspension cultures [Proudhon, Briat & Lescure (1989) Plant Physiol. 90, 586-590]. This iron-induced ferritin has been purified from cells grown for 72 h in the presence of either 100 microM- or 500 microM-ferric citrate. It has a molecular mass of about 600 kDa and is built up from a 28 kDa subunit which is recognized by antibodies raised against pea (Pisum sativum) seed ferritin and it has the same N-terminal sequence as this latter, except for residue number 3, which is alanine in pea seed ferritin instead of valine in iron-induced soybean cell ferritin. It contains an average of 1800 atoms of iron per molecule whatever the ferric citrate concentration used to induce its synthesis. It is shown that the presence of 100 microM- or 500 microM-ferric citrate in the culture medium leads respectively to an 11- and 28-fold increase in the total intracellular iron concentration and to a 30- and 60-fold increase in the ferritin concentration. However, the percentage of iron stored in the mineral core of ferritin remains constant whatever the ferric citrate concentration used and represents only 5-6% of cellular iron.
机译:柠檬酸铁在大豆(Glycine max)细胞悬浮培养物中诱导铁蛋白的合成和积累[Proudhon,Briat和Lescure(1989)Plant Physiol.Chem.Soc。,Vol.5,pp。 90,586-590]。该铁诱导的铁蛋白已从存在100 microM或500 microM柠檬酸铁的情况下生长72小时的细胞中纯化出来。它具有约600 kDa的分子量,由28 kDa的亚基构建而成,可被针对豌豆(Pisum sativum)种子铁蛋白的抗体识别,并具有与后者相同的N端序列,除了残基3 ,这是豌豆种子铁蛋白中的丙氨酸,而不是铁诱导的大豆细胞铁蛋白中的缬氨酸。无论用于诱导其合成的柠檬酸铁浓度如何,每个分子平均含有1800个铁原子。结果表明,在培养基中存在100 microM或500 microM柠檬酸铁分别导致总细胞内铁浓度增加11倍和28倍,铁蛋白增加30倍和60倍浓度。但是,无论柠檬酸铁的使用浓度如何,铁蛋白矿质芯中存储的铁的百分比均保持不变,仅占细胞铁的5-6%。

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