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首页> 外文期刊>Applied Microbiology and Biotechnology >Optimized expression of the dirigent protein AtDIR6 in Pichia pastoris and impact of glycosylation on protein structure and function
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Optimized expression of the dirigent protein AtDIR6 in Pichia pastoris and impact of glycosylation on protein structure and function

机译:毕赤酵母中稀有蛋白AtDIR6的优化表达以及糖基化对蛋白结构和功能的影响

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Phenoxy radical coupling reactions are involved in the biosynthesis of lignans in planta. Interestingly, the reaction can be guided by dirigent proteins, which mediate the stereoselective formation of either (+) or (-)-pinoresinol from coniferyl alcohol. So far, the mechanism is poorly understood, and for detailed mechanistic studies, a heterologous expression platform which allows the cost-effective, fast, and robust expression in high yields is needed. We established a reliable, high-yield fed-batch fermentation process with Pichia pastoris resulting in 47 mg L~(-1) of the dirigent protein AtDIR6, which represents a more than 250-fold increase compared to previous studies. Biochemical characterization of AtDIR6 produced with P. pastoris showed an overall agreement in protein structure, N-glycosylation sites, and dirigent activity compared to AtDIR6 produced by plant cell cultures of Solanum peruvianum. CD spectroscopy verified the β-barrel structure proposed by earlier studies and bioconversion experiments revealed similar activities to plant-derived protein, validating P. pastoris as a suitable expression system for dirigent proteins. Compared to the complex glycan structures of most plant cells, proteins produced with P. pastoris have the advantage that they can be enzymatically deglycosylated under non-denaturating conditions. With this study, we demonstrate that the glycan structures of AtDIR6 are essential for structure, solubility, and function of the protein as deglycosylation induced conformational changes leading to the complete loss in dirigent activity and subsequent protein aggregation.
机译:苯氧基自由基偶联反应参与植物中木脂素的生物合成。有趣的是,该反应可以由介导松柏油中(+)或(-)-松脂醇的立体选择性形成的稀疏蛋白指导。迄今为止,对该机制的了解甚少,并且对于详细的机理研究,需要一种异源表达平台,该平台允许以高收益的方式实现具有成本效益,快速且可靠的表达。我们用巴斯德毕赤酵母建立了可靠,高产的分批发酵工艺,产生47 mg L〜(-1)的稀有蛋白AtDIR6,与以前的研究相比,增加了250倍以上。与巴斯德茄植物细胞培养产生的AtDIR6相比,毕赤酵母产生的AtDIR6的生化特性显示出蛋白质结构,N-糖基化位点和消化活性的总体一致性。 CD光谱法验证了早期研究提出的β-桶结构,生物转化实验表明其活性与植物来源的蛋白相似,从而验证了巴斯德毕赤酵母是适合于不同蛋白质的表达系统。与大多数植物细胞的复杂聚糖结构相比,巴斯德毕赤酵母产生的蛋白质具有以下优势:可以在非变性条件下将其酶解糖基化。通过这项研究,我们证明了AtDIR6的聚糖结构对于蛋白质的结构,溶解性和功能至关重要,因为去糖基化诱导的构象变化会导致Dirigant活性的完全丧失和随后的蛋白质聚集。

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