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A self-sufficient system for removal of synthetic dye by coupling of spore-displayed triphenylmethane reductase and glucose 1-dehydrogenase

机译:通过孢子展示的三苯甲烷还原酶和葡萄糖1-脱氢酶偶联来去除合成染料的自给系统

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Biodegradation of triphenylmethane dyes by microorganisms is hampered by the transport barrier imposed by cell membranes. On the other hand, cell-free systems using enzyme-based biodegradation strategy are costly. Therefore, an efficient and inexpensive approach circumventing these problems is highly desirable. Here, we constructed a self-sufficient system for synthetic dye removal by coupling of spore surface-displayed triphenylmethane reductase (TMR) and glucose 1-dehydrogenase (GDH) for the first time. Display of both TMR and GDH significantly enhanced their stability under conditions of extreme pH and temperature. These engineered spores also exhibited more robust long-term stability than their purified counterparts. Furthermore, we observed that a high ratio of spore-displayed GDH is necessary for high dye degradation efficiency. These results indicate that this continuous dye removal system with cofactor regeneration offers a promising solution for dye biodegradation applications.
机译:微生物对三苯甲烷染料的生物降解受到细胞膜施加的转运屏障的阻碍。另一方面,使用基于酶的生物降解策略的无细胞系统成本很高。因此,迫切需要一种有效和廉价的方法来解决这些问题。在这里,我们首次构建了一个自给自足的系统,通过首次将孢子表面展示的三苯基甲烷还原酶(TMR)和葡萄糖1-脱氢酶(GDH)偶联来去除合成染料。在极端pH和温度条件下,TMR和GDH的显示均显着增强了它们的稳定性。这些工程孢子也比其纯化的对应物表现出更强的长期稳定性。此外,我们观察到高比例的芽孢展示GDH对于高染料降解效率是必需的。这些结果表明,这种具有辅因子再生的连续染料去除系统为染料生物降解应用提供了一个有前途的解决方案。

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