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植物铁蛋白及其对人类健康和营养的影响。

Phytoferritin and its implications for human health and nutrition.

作者信息

Zhao Guanghua

机构信息

CAU and ACC Joint-Laboratory of Space Food, College of Food Science and Nutritional Engineering, China Agricultural University, Beijing 100083, PR China.

出版信息

Biochim Biophys Acta. 2010 Aug;1800(8):815-23. doi: 10.1016/j.bbagen.2010.01.009. Epub 2010 Jan 25.

Abstract

BACKGROUND

Plant and animal ferritins stem from a common ancestor, but plant ferritins exhibit various features that are different from those of animal ferritins. Phytoferritin is observed in plastids (e.g., chloroplasts in leaves, amyloplasts in tubers and seeds), whereas animal ferritin is largely found in the cytoplasm. The main difference in structure between plant and animal ferritins is the two specific domains (TP and EP) at the N-terminal sequence of phytoferritin, which endow phytoferritin with specific iron chemistry. As a member of the nonheme iron group of dietary iron sources, phytoferritin consists of 24 subunits that assemble into a spherical shell storing up to approximately 2000 Fe(3+) in the form of an iron oxyhydroxide-phosphate mineral. This feature is distinct from small molecule nonheme iron existing in cereals, which has poor bioavailability.

SCOPE OF REVIEW

This review focuses on the relationship between structure and function of phytoferritin and the recent progress in the use of phytoferritin as iron supplement.

MAJOR CONCLUSIONS

Phytoferritin, especially from legume seeds, represents a novel alternative dietary iron source.

GENERAL SIGNIFICANCE

An understanding of the chemistry and biology of phytoferritin, its interaction with iron, and its stability against gastric digestion is beneficial to design diets that will be used for treatment of global iron deficiency.

摘要

背景

植物和动物铁蛋白起源于共同的祖先,但植物铁蛋白具有多种与动物铁蛋白不同的特征。植物铁蛋白存在于质体中(例如,叶片中的叶绿体、块茎和种子中的造粉体),而动物铁蛋白主要存在于细胞质中。植物和动物铁蛋白在结构上的主要差异在于植物铁蛋白N端序列的两个特定结构域(TP和EP),这赋予了植物铁蛋白特定的铁化学性质。作为膳食铁源中非血红素铁组的一员,植物铁蛋白由24个亚基组成,这些亚基组装成一个球形外壳,以氢氧化铁 - 磷酸盐矿物的形式储存多达约2000个Fe(3+)。这一特征与谷物中存在的小分子非血红素铁不同,后者的生物利用度较差。

综述范围

本综述重点关注植物铁蛋白的结构与功能之间的关系以及植物铁蛋白作为铁补充剂应用的最新进展。

主要结论

植物铁蛋白,尤其是来自豆类种子的植物铁蛋白,是一种新型的膳食铁源替代品。

一般意义

了解植物铁蛋白的化学和生物学特性、其与铁的相互作用以及其对胃消化的稳定性,有助于设计用于治疗全球缺铁问题的饮食。

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