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Mechanism‐Guided Design of Highly Efficient Protein Secretion and Lipid Conversion for Biomanufacturing and Biorefining

机译:用于生物制造和生物精制的高效蛋白质分泌和脂质转化的机制指导设计

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摘要

Bacterial protein secretion represents a significant challenge in biotechnology, which is essential for the cost‐effective production of therapeutics, enzymes, and other functional proteins. Here, it is demonstrated that proteomics‐guided engineering of transcription, translation, secretion, and folding of ligninolytic laccase balances the process, minimizes the toxicity, and enables efficient heterologous secretion with a total protein yield of 13.7 g L−1. The secretory laccase complements the biochemical limits on lignin depolymerization well in Rhodococcus opacus PD630. Further proteomics analysis reveals the mechanisms for the oleaginous phenotype of R. opacus PD630, where a distinct multiunit fatty acid synthase I drives the carbon partition to storage lipid. The discovery guides the design of efficient lipid conversion from lignin and carbohydrate. The proteomics‐guided integration of laccase‐secretion and lipid production modules enables a high titer in converting lignin‐enriched biorefinery waste to lipid. The fundamental mechanisms, engineering components, and design principle can empower transformative platforms for biomanufacturing and biorefining.
机译:细菌蛋白质的分泌代表了生物技术领域的重大挑战,这对于经济有效地生产治疗剂,酶和其他功能性蛋白质至关重要。在此证明,蛋白质组学指导的木质素酶漆酶的转录,翻译,分泌和折叠工程可以平衡该过程,最大程度地降低毒性,并实现有效的异源分泌,总蛋白产量为13.7 g L -1 < / sup>。分泌型漆酶很好地弥补了不透明红球菌PD630中木质素解聚的生化限制。进一步的蛋白质组学分析揭示了不透明芽孢杆菌PD630的油性表型的机制,其中独特的多单元脂肪酸合酶I驱动碳分配以存储脂质。该发现指导了从木质素和碳水化合物高效脂质转化的设计。蛋白质组学指导的漆酶分泌和脂质生产模块的集成,在将富含木质素的生物精炼废料转化为脂质方面具有很高的效价。基本的机制,工程组件和设计原则可以为生物制造和生物精炼提供转型平台。

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