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An enhanced approach for engineering thermally stable proteins using yeast display

机译:使用酵母展示工程热稳定蛋白的增强方法

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摘要

Many biotechnology applications require the evolution of enhanced protein stability. Using polymerase chain reaction-based recovery of engineered clones during the screen enrichment phase, we describe a yeast display method capable of yielding engineered proteins having thermal stability that substantially exceeds the viability threshold of the yeast host. To this end, yeast-enhanced green fluorescent protein destabilized by dual-loop insertion was engineered to possess a substantially enhanced resistance to thermal denaturation at 70°C. Stabilized proteins were secreted, purified and found to have three- to six-fold increased resistance to thermal denaturation. The validated method enables yeast display-based screens in previously inaccessible regions of the fitness landscape.
机译:许多生物技术应用要求进化出增强的蛋白质稳定性。在筛选富集阶段使用工程聚合体的基于聚合酶链反应的回收,我们描述了一种酵母展示方法,该方法能够产生热稳定性大大超过酵母宿主活力阈值的工程蛋白。为此,对通过双环插入而不稳定的酵母增强的绿色荧光蛋白进行了改造,使其在70°C时具有显着增强的抗热变性能力。稳定蛋白被分泌,纯化并发现其对热变性的抵抗力提高了三至六倍。经过验证的方法可以在健身环境以前不可访问的区域中基于酵母显示的屏幕。

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