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植物铁蛋白的结构、功能和营养:一种新型的补铁功能因子。

Structure, function, and nutrition of phytoferritin: a newly functional factor for iron supplement.

机构信息

a CAU & ACC Joint-Laboratory of Space Food, Center for Human Nutrition and Health, College of Food Science and Nutritional Engineering , China Agricultural University , Beijing Key Laboratory of Functional Food from Plant Resources , Beijing , 100083 , China.

出版信息

Crit Rev Food Sci Nutr. 2014;54(10):1342-52. doi: 10.1080/10408398.2011.635914.

Abstract

Ferritins are members of the superfamily of iron storage and detoxification proteins present in all living organisms and play important roles in controlling cellular iron homeostasis. In contrast to animal ferritin, relatively little information is available on the structure and function of phytoferritin. Phytoferritin is observed in plastids whereas animal ferritins are largely found in the cytoplasm of cell. Compared to animal ferritin, phytoferritin exhibits two major distinctive features in structure. First, phytoferritin contains a specific extension peptide (EP) at the N-terminal while animal ferritin lacks it. The EP is located on the exterior surface of protein, which recently has been found to act as a second ferroxidase center for iron-binding and oxidation, and regulate iron release during the germination and early growth of seedlings. Second, only H-type subunit has been identified in phytoferritin, which is usually a heteropolymer consisting of two different subunits, H-1 and H-2, sharing ~80% amino acid sequence identity. These two subunits in phytoferritin play a positively cooperative role in iron oxidative deposition in protein. Iron deficiency anemia (IDA) is the most common and widespread nutritional disorder in the world, so it is crucial to explore a safe and efficient functional factor for iron supplement. Fortunately, phytoferritin seems to be a suitable candidate. In legume seeds, more than 90% of iron is stored in the form of ferritin in amyloplasts. Recently, some studies at different levels have demonstrated that plant ferritin could be used as novel, utilizable, plant-based forms of iron for populations with a low iron status. This review focuses on recent progress in structure, function, and nutrition of phytoferritin.

摘要

铁蛋白是存在于所有生物中的铁储存和解毒蛋白超家族的成员,在控制细胞铁稳态方面发挥着重要作用。与动物铁蛋白相比,关于植物铁蛋白的结构和功能的信息相对较少。植物铁蛋白存在于质体中,而动物铁蛋白主要存在于细胞质中。与动物铁蛋白相比,植物铁蛋白在结构上有两个主要的显著特征。首先,植物铁蛋白在 N 端含有一个特定的延伸肽(EP),而动物铁蛋白则缺乏。EP 位于蛋白质的外表面,最近发现它作为第二个亚铁氧化酶中心,用于铁结合和氧化,并调节种子萌发和幼苗早期生长过程中的铁释放。其次,植物铁蛋白中只鉴定出 H 型亚基,它通常是由两个不同亚基 H-1 和 H-2 组成的异源聚合物,具有约 80%的氨基酸序列同一性。这两个亚基在植物铁蛋白中在蛋白质中铁的氧化沉积中发挥正协同作用。缺铁性贫血(IDA)是世界上最常见和最广泛的营养失调,因此探索安全有效的铁补充功能因子至关重要。幸运的是,植物铁蛋白似乎是一个合适的候选者。在豆科种子中,超过 90%的铁以铁蛋白的形式储存在淀粉体中。最近,不同水平的一些研究表明,植物铁蛋白可以作为铁缺乏人群新的、可用的、基于植物的铁形式。本综述重点介绍了植物铁蛋白在结构、功能和营养方面的最新进展。

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