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Production of milk-derived bioactive peptides as precursor chimeric proteins in chloroplasts of Chlamydomonas reinhardtii

机译:莱茵衣藻叶绿体中乳源生物活性肽作为前体嵌合蛋白的产生

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摘要

Bioactive peptides are considered high value-added ingredients in functional foods, and the main sources of these are milk, egg, plants, among others. A major limitation in their commercial use is the cost of production. This study deals with the design and production of a chimeric protein in chloroplasts of the microalgae Chlamydomonas reinhardtii to generate bioactive peptides of antihypertensive, opioid, antimicrobial, and hypocholesterolemic activities. A synthetic gene, designated as NCQ, coding for the selected chimeric protein, is transferred to C. reinhardtii using biolistic bombardment. Transplastomic transformants have been identified by PCR and Western blots following selection on a spectinomycin-containing medium. An ELISA quantification assay has revealed that the expressed NCQ protein accumulated at levels ranging between 0.16 and 2.4 % of total soluble protein. These findings demonstrate that chloroplasts of C. reinhardtii could serve as a robust expression platform for production of bioactive peptides.
机译:生物活性肽被认为是功能食品中的高附加值成分,其中的主要来源是牛奶,鸡蛋,植物等。它们的商业用途的主要限制是生产成本。这项研究涉及设计和生产微藻莱茵衣藻叶绿体中的嵌合蛋白,以产生具有降压,阿片类药物,抗微生物和降胆固醇活性的生物活性肽。使用生物弹轰击将编码所选嵌合蛋白的合成基因(称为NCQ)转移至莱茵衣藻。在含有壮观霉素的培养基上进行选择后,通过PCR和Western印迹鉴定了转质体转化体。 ELISA定量分析表明,表达的NCQ蛋白积累的水平在总可溶性蛋白的0.16%至2.4%之间。这些发现表明,莱茵衣藻的叶绿体可以用作产生生物活性肽的强大表达平台。

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