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首页> 外文期刊>ACS Synthetic Biology >Engineered Fusion Proteins for Efficient Protein Secretion and Purification of a Human Growth Factor from the Green Microalga Chlamydomonas reinhardtii
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Engineered Fusion Proteins for Efficient Protein Secretion and Purification of a Human Growth Factor from the Green Microalga Chlamydomonas reinhardtii

机译:工程化融合蛋白,用于高效蛋白质分泌和纯化绿色微藻衣原体Reinhardtii的人生长因子

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Light-driven recombinant protein (RP) production in eukaryotic microalgae offers a sustainable alternative to other established cell-culture systems. RP production via secretion into the culture medium enables simple product separation from the cells adding a layer of process value in addition to the algal biomass, which can be separately harvested. For the model microalga Chlamydomonas reinhardtii, a broad range of molecular tools have been established to enable heterologous gene expression; however, low RP production levels and unreliable purification from secretion concepts have been reported. Domesticated C. reinhardtii strains used for genetic engineering are often cell-wall deficient. These strains nevertheless secrete cell-wall components such as insoluble (hydroxy)proline-rich glycoproteins into the culture media, which hinder downstream purification processes. Here, we attempted to overcome limitations in secretion titers and improve protein purification by combining fusion partners that enhance RP secretion and enable alternative aqueous two-phase (ATPS) RP extraction from the culture medium. Protein fusions were strategically designed to contain a stably folded peptide, which enhanced secretion capacities and gave insights into (some) regulatory mechanisms responsible for this process in the algal host. The elevated protein titers mediated by this fusion were then successfully applied in combination with a fungal hydrophobin tag, which enabled protein purification from the complex microalgal extracellular environment by ATPS, to yield functional recombinant human epidermal growth factor (hEGF) from the algal host.
机译:真核微藻中的光驱动的重组蛋白(RP)产生提供了其他已建立的细胞培养系统的可持续替代品。通过分泌到培养基中的RP生产能够在除了藻类生物量之外,可以单独地分离加入一层工艺值,这可以单独收获。对于模型微藻衣原体Reinhardtii,已经建立了广泛的分子工具以实现异源基因表达;然而,已经报道了低RP生产水平和分泌概念的不可靠的净化。用于基因工程的驯化C. Reinhardtii菌株通常是细胞壁缺陷。然而,这些菌株尤其分泌细胞壁组分,例如不溶(羟基)富含富含糖蛋白的富含培养基,其阻碍下游净化过程。在这里,我们试图通过组合增强RP分泌的融合伴侣并使来自培养基的替代水性两相(ATP)RP提取来改善蛋白质纯化的分泌滴度并改善蛋白质纯化。蛋白质融合是策略性设计的,含有稳定折叠的肽,该肽增强了分泌能力,并对藻类宿主中该过程负责的(某些)调节机制增强了洞察力。然后将通过该融合介导的升高的蛋白质滴度与真菌疏水蛋白标签相结合,其使蛋白质纯化来自复合微藻环境通过ATP,从藻类宿主产生功能性重组人表皮生长因子(HEGF)。

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