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用于功能性食品开发的高产表达人铁蛋白重链纳米颗粒

High-Yield Expressed Human Ferritin Heavy-Chain Nanoparticles in for Functional Food Development.

作者信息

Lu Xinyi, Liu Liping, Zhang Haibo, Lu Haifang, Tian Tian, Du Bing, Li Pan, Yu Yao, Zhou Jungang, Lu Hong

机构信息

State Key Laboratory of Genetic Engineering, School of Life Sciences, Fudan University, Shanghai 200438, China.

Shanghai Engineering Research Center of Industrial Microorganisms, Fudan University, Shanghai 200438, China.

出版信息

Foods. 2024 Sep 15;13(18):2919. doi: 10.3390/foods13182919.

Abstract

The use of Generally Recognized as Safe (GRAS)-grade microbial cell factories to produce recombinant protein-based nutritional products is a promising trend in developing food and health supplements. In this study, GRAS-grade was employed to express recombinant human heavy-chain ferritin (rhFTH), achieving a yield of 11 g/L in a 5 L fermenter, marking the highest yield reported for ferritin nanoparticle proteins to our knowledge. The rhFTH formed 12 nm spherical nanocages capable of ferroxidase activity, which involves converting Fe to Fe for storage. The rhFTH-containing yeast cell lysates promoted cytokine secretion (tumor necrosis factor-α (TNF-α), interleukin-6 (IL-6), and -1β (IL-1β)) and enhanced locomotion, pharyngeal pumping frequency, egg-laying capacity, and lifespan under heat and oxidative stress in the RAW264.7 mouse cell line and the model, respectively, whereas yeast cell lysate alone had no such effects. These findings suggest that rhFTH boosts immunity, holding promise for developing ferritin-based food and nutritional products and suggesting its adjuvant potential for clinical applications of ferritin-based nanomedicine. The high-yield production of ferritin nanoparticles in offers a valuable source of ferritin for the development of ferritin-based products.

摘要

使用一般认为安全(GRAS)等级的微生物细胞工厂来生产基于重组蛋白的营养产品,是开发食品和健康补充剂的一个有前景的趋势。在本研究中,采用GRAS等级的[具体内容缺失]来表达重组人重链铁蛋白(rhFTH),在5升发酵罐中产量达到11克/升,据我们所知,这是铁蛋白纳米颗粒蛋白报道的最高产量。rhFTH形成了能够进行铁氧化酶活性的12纳米球形纳米笼,这涉及将Fe转化为Fe用于储存。含rhFTH的酵母细胞裂解物分别促进了RAW264.7小鼠细胞系和[具体模型缺失]模型在热应激和氧化应激下的细胞因子分泌(肿瘤坏死因子-α(TNF-α)、白细胞介素-6(IL-6)和白细胞介素-1β(IL-1β)),并增强了运动能力、咽泵频率、产卵能力和寿命,而单独的酵母细胞裂解物没有这种作用。这些发现表明rhFTH可增强免疫力,为开发基于铁蛋白的食品和营养产品带来希望,并表明其在基于铁蛋白的纳米医学临床应用中的佐剂潜力。[具体内容缺失]中铁蛋白纳米颗粒的高产生产为基于铁蛋白的产品开发提供了宝贵的铁蛋白来源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a1a0/11431416/041a8a31fe7c/foods-13-02919-g001.jpg

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