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玉米血红蛋白在 Caco-2 细胞培养模型中的铁生物利用度。

Iron bioavailability of maize hemoglobin in a Caco-2 cell culture model.

机构信息

Interdepartmental Genetics Graduate Program, Iowa State University, Ames, Iowa 50011, United States.

出版信息

J Agric Food Chem. 2013 Jul 31;61(30):7349-56. doi: 10.1021/jf3020188. Epub 2013 Jul 19.

Abstract

Maize ( Zea mays ) is an important staple crop in many parts of the world but has low iron bioavailability, in part due to its high phytate content. Hemoglobin is a form of iron that is highly bioavailable, and its bioavailability is not inhibited by phytate. It was hypothesized that maize hemoglobin is a highly bioavailable iron source and that biofortification of maize with iron can be accomplished by overexpression of maize globin in the endosperm. Maize was transformed with a gene construct encoding a translational fusion of maize globin and green fluorescent protein under transcriptional control of the maize 27 kDa γ-zein promoter. Iron bioavailability of maize hemoglobin produced in Escherichia coli and of stably transformed seeds expressing the maize globin-GFP fusion was determined using an in vitro Caco-2 cell culture model. Maize flour fortified with maize hemoglobin was found to have iron bioavailability that is not significantly different from that of flour fortified with ferrous sulfate or bovine hemoglobin but is significantly higher than unfortified flour. Transformed maize grain expressing maize globin was found to have iron bioavailability similar to that of untransformed seeds. These results suggest that maize globin produced in E. coli may be an effective iron fortificant, but overexpressing maize globin in maize endosperm may require a different strategy to increase bioavailable iron content in maize.

摘要

玉米(Zea mays)是世界许多地区的重要主食作物,但铁的生物利用率较低,部分原因是其植酸含量高。血红蛋白是一种铁的形式,具有很高的生物利用率,其生物利用率不受植酸的抑制。因此,假设玉米血红蛋白是一种高生物利用率的铁源,通过在胚乳中过表达玉米球蛋白,可以实现玉米的铁生物强化。通过玉米 27kDaγ-zein 启动子的转录控制,将编码玉米球蛋白和绿色荧光蛋白翻译融合的基因构建体转化到玉米中。通过体外 Caco-2 细胞培养模型,测定了在大肠杆菌中产生的玉米血红蛋白和稳定转化种子中表达的玉米球蛋白-GFP 融合物的铁生物利用率。发现添加玉米血红蛋白的玉米粉的铁生物利用率与添加硫酸亚铁或牛血红蛋白的玉米粉没有显著差异,但明显高于未强化的玉米粉。发现表达玉米球蛋白的转化玉米粒的铁生物利用率与未转化种子相似。这些结果表明,在大肠杆菌中产生的玉米球蛋白可能是一种有效的铁强化剂,但在玉米胚乳中过表达玉米球蛋白可能需要一种不同的策略来提高玉米中铁的生物可利用性。

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