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Micelle-mediated transport disturbance providing extracellular strategy for alleviating n-butanol stress on Escherichia coli

机译:胶束介导的运输干扰为减轻大肠杆菌中的正丁醇胁迫提供了细胞外策略

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One barrier inhibiting further progress in biofuel production is the toxicity of biofuels towards their producers. It is promising to apply gene-based intracellular techniques to engineer better strains with higher organic solvent tolerance. These methods are, however, complex. In the present study, we developed a simple, manageable, and commercial extracellular prototypal strategy to alleviate n-butanol (n-BuOH) stress on Escherichia coli via a micelle-mediated transport disturbance. When the concentration of sodium dodecyl sulfate, a typical anionic surfactant, is high enough to form micelles, n-BuOH will be trapped into/onto the micelles, and the negative charge prevents the n-BuOH from approaching the cells. Our study provides an extracellular strategy to relieve the stress from n-BuOH, and it also exhibits a new angle to advance microbial factories through extracellular routines.
机译:阻碍生物燃料生产进一步发展的一个障碍是生物燃料对其生产者的毒性。有望应用基于基因的细胞内技术来设计具有较高有机溶剂耐受性的更好菌株。但是,这些方法很复杂。在本研究中,我们开发了一种简单,易于管理的商业化细胞外原型策略,以通过胶束介导的运输干扰减轻对大肠杆菌的正丁醇(n-BuOH)胁迫。当典型的阴离子表面活性剂十二烷基硫酸钠的浓度足够高以形成胶束时,n-BuOH将被困在胶束中/之上,并且负电荷会阻止n-BuOH接近细胞。我们的研究提供了一种减轻n-BuOH压力的细胞外策略,并且它还展示了通过细胞外程序促进微生物工厂发展的新角度。

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