College of Food and Pharmaceutical Sciences, Ningbo University, Ningbo, China.
Key Laboratory of Animal Protein Food Deep Processing Technology of Zhejiang Province, Ningbo University, Ningbo, China.
J Sci Food Agric. 2023 Jan 30;103(2):891-899. doi: 10.1002/jsfa.12200. Epub 2022 Oct 3.
Iron-deficiency anemia is one severe micronutrient malnutrition and has captured worldwide attention. This study evaluated the in vitro iron absorption of two iron-binding proteins (hemoglobin and ferritin) from Tegillarca granosa. In addition, the protein structure-iron absorption relationship and the regulatory effect of hepcidin on cellular iron absorption were explored.
Our findings revealed that both hemoglobin and ferritin extracted from T. granosa contained abundant iron-binding sites, as evidenced by stronger peaks in amide I and II regions compared with the two proteins from humans. Less β-sheet (27.67%) structures were found in hemoglobin compared with ferritin (36.40%), probably contributing to its greater digestibility and more release of available iron. This was confirmed by the results of Caco-2/HepG2 cell culture system that showed iron absorption of hemoglobin was 26.10-39.31% higher than that of ferritin with an iron content of 50-150 μmol L . This high iron absorption of hemoglobin (117.86-174.10 ng mg ) could also be due to more hepcidin produced by HepG2 cells, thereby preventing ferroportin-mediated iron efflux from Caco-2 cells. In addition, the possible risk of oxidative stress was evaluated in cells post-iron exposure. In comparison with ferrous sulfate, a common iron supplement, Caco-2 cells treated with the iron-binding proteins had a 9.50-25.73% lower level of intracellular reactive oxygen species, indicating the safety of hemoglobin and ferritin.
Collectively, the data of this research would be helpful for understanding the key features and potential of developing hemoglobin and ferritin from T. granosa as novel iron supplements. © 2022 Society of Chemical Industry.
缺铁性贫血是一种严重的微量营养素营养不良,已引起全球关注。本研究评估了来自中国蛤蜊(Tegillarca granosa)的两种铁结合蛋白(血红蛋白和铁蛋白)的体外铁吸收情况。此外,还探讨了蛋白质结构-铁吸收关系以及铁调素对细胞铁吸收的调节作用。
我们的研究结果表明,从 T. granosa 提取的血红蛋白和铁蛋白均含有丰富的铁结合位点,酰胺 I 和 II 区域的峰强度强于来自人类的两种蛋白质。与铁蛋白(36.40%)相比,血红蛋白中的β-折叠结构较少(27.67%),这可能有助于其更好的消化和更多的游离铁释放。Caco-2/HepG2 细胞培养系统的结果证实了这一点,该系统显示血红蛋白的铁吸收率比铁蛋白高 26.10%-39.31%,铁蛋白的铁含量为 50-150 μmol/L。血红蛋白(117.86-174.10 ng/mg)的高铁吸收率也可能是由于 HepG2 细胞产生更多的铁调素,从而防止铁蛋白介导的 Caco-2 细胞中铁的外排。此外,还评估了细胞暴露于铁后的氧化应激风险。与硫酸亚铁(一种常用的铁补充剂)相比,用铁结合蛋白处理的 Caco-2 细胞的细胞内活性氧水平低 9.50%-25.73%,表明血红蛋白和铁蛋白是安全的。
总的来说,本研究的数据有助于理解开发来自 T. granosa 的血红蛋白和铁蛋白作为新型铁补充剂的关键特征和潜力。 © 2022 化学工业协会。