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Production of hypoallergenic milk from DNA-free beta-lactoglobulin (BLG) gene knockout cow using zinc-finger nucleases mRNA

机译:使用锌指核酸酶mRNA从无DNA的β-乳球蛋白(BLG)基因敲除牛生产低变应原性牛奶

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摘要

The whey protein β-lactoglobulin (BLG) is a major milk allergen which is absent in human milk. Here, we for the first time generated DNA-free BLG bi-allelic knockout cow by zinc-finger nuclease (ZFNs) mRNA and produced BLG-free milk. According to the allergenicity evaluation of BLG-free milk, we found it can trigger lower allergic reaction of Balb/c mice including the rectal temperature drop and the allergen-specific immunoglobulin IgE production; BLG free-milk was easily digested by pepsin at 2 min, while BLG in control milk was still not completely digested after 60 min, and the binding of IgE from cow’s milk allergy (CMA) patients to BLG free-milk was significantly lower than that to the control milk. Meanwhile, the genome sequencing revealed that our animal is free of off-target events. Importantly, editing animal genomes without introducing foreign DNA into cells may alleviate regulatory concerns related to foods produced by genome edited animals. Finally, the ZFNs-mediated targeting in cow could be transmitted through the germline by breeding. These findings will open up unlimited possibilities of modifying milk composition to make it more suitable for human health and also improve the functional properties of milk.
机译:乳清蛋白β-乳球蛋白(BLG)是人乳中不存在的主要乳过敏原。在这里,我们首次通过锌指核酸酶(ZFNs)mRNA产生了无DNA的BLG双等位基因敲除牛,并生产了无BLG的牛奶。根据不含BLG的牛奶的变应原性评估,我们发现它可以触发Balb / c小鼠较低的变应性反应,包括直肠温度下降和变应原特异性免疫球蛋白IgE产生;胃蛋白酶在2分钟时很容易消化BLG游离乳,而对照牛奶中的BLG则在60分钟后仍未完全消化,并且来自牛奶过敏(CMA)患者的IgE与BLG游离乳的结合显着低于到对照牛奶。同时,基因组测序表明我们的动物没有脱靶事件。重要的是,在不将外源DNA引入细胞的情况下编辑动物基因组可以减轻与基因组编辑动物生产的食物有关的监管问题。最终,牛中ZFNs介导的靶向可以通过繁殖通过种系传播。这些发现将为改变牛奶成分以使其更适合人体健康,并改善牛奶的功能特性提供无限可能。

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