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Modulation of Thiol-Disulfide Oxidoreductases for Increased Production of Disulfide-Bond-Containing Proteins in Bacillus subtilis

机译:硫醇二硫氧化还原酶的调节以增加枯草芽孢杆菌中含二硫键的蛋白质的产量

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摘要

Disulfide bonds are important for the correct folding, structural integrity, and activity of many biotechnologically relevant proteins. For synthesis and subsequent secretion of these proteins in bacteria, such as the well-known “cell factory” Bacillus subtilis, it is often the correct formation of disulfide bonds that is the greatest bottleneck. Degradation of inefficiently or incorrectly oxidized proteins and the requirement for costly and time-consuming reduction and oxidation steps in the downstream processing of the proteins still are major limitations for full exploitation of B. subtilis for biopharmaceutical production. Therefore, the present study was aimed at developing a novel in vivo strategy for improved production of secreted disulfide-bond-containing proteins. Three approaches were tested: depletion of the major cytoplasmic reductase TrxA; introduction of the heterologous oxidase DsbA from Staphylococcus carnosus; and addition of redox-active compounds to the growth medium. As shown using the disulfide-bond-containing molecule Escherichia coli PhoA as a model protein, combined use of these three approaches resulted in secretion of amounts of active PhoA that were ∼3.5-fold larger than the amounts secreted by the parental strain B. subtilis 168. Our findings indicate that Bacillus strains with improved oxidizing properties can be engineered for biotechnological production of heterologous high-value proteins containing disulfide bonds.
机译:二硫键对于许多生物技术相关蛋白的正确折叠,结构完整性和活性很重要。对于这些蛋白质在细菌(例如众所周知的“细胞工厂”枯草芽孢杆菌)中的合成和随后的分泌,通常最大的瓶颈通常是正确形成二硫键。无效或不正确氧化的蛋白质的降解以及蛋白质下游加工中昂贵且费时的还原和氧化步骤的要求仍然是完全利用枯草芽孢杆菌用于生物制药的主要限制。因此,本研究旨在开发一种新型的体内策略,以改善分泌的含二硫键的蛋白质的生产。测试了三种方法:主要细胞质还原酶TrxA的耗竭;从葡萄球菌中引入异源氧化酶DsbA;并将氧化还原活性化合物添加到生长培养基中。如使用含二硫键的分子大肠杆菌PhoA作为模型蛋白所示,这三种方法的组合使用导致活性PhoA的分泌量比亲本菌株B. subtilis分泌的量大约3.5倍。 168.我们的发现表明,具有改良氧化特性的芽孢杆菌菌株可以被工程化用于生物技术生产含有二硫键的异源高价值蛋白质。

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