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首页> 外文期刊>Protein Science: A Publication of the Protein Society >A green fluorescent protein screen for identification of well-expressed membrane proteins from a cohort of extremophilic organisms.
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A green fluorescent protein screen for identification of well-expressed membrane proteins from a cohort of extremophilic organisms.

机译:绿色荧光蛋白筛查,用于鉴定来自极端微生物群的表达良好的膜蛋白。

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摘要

Green fluorescent protein (GFP) fusion proteins provide a potentially facile tool for identification of well expressed, properly behaved membrane proteins for biochemical and structural study. Here, we present a GFP-expression survey of >300 membrane proteins from 18 bacterial and archaeal extremophiles, organisms expected to be rich sources of membrane proteins having robust biophysical properties. We find that GFP-fusion fluorescence intensity is an excellent indicator of over-expression potential. By employing a follow-up optimization protocol using a suite of non-GFP constructs and different expression temperatures, we obtain 0.5-15 mg L(-1) expression levels for 90% of the tested candidate proteins that pass the GFP screen. Evaluation of the results suggests that certain organisms may serve as better sources of well-expressed membrane proteins than others, that the degree to which codon usage matches the expression host is uncorrelated with success rate, and that the combination of GFP screening and expression optimization is essential for producing biochemically tractable quantities of material.
机译:绿色荧光蛋白(GFP)融合蛋白为鉴定表达良好,表现良好的膜蛋白进行生化和结构研究提供了一种潜在的简便工具。在这里,我们介绍了来自18个细菌和古细菌极端微生物的300多种膜蛋白的GFP表达调查,这些细菌有望成为具有健壮的生物物理特性的膜蛋白的丰富来源。我们发现GFP融合荧光强度是过度表达潜力的极好的指标。通过使用一套非GFP构建体和不同表达温度的后续优化方案,对于90%通过GFP筛选的候选候选蛋白,我们获得0.5-15 mg L(-1)表达水平。结果评估表明,某些生物可能比其他生物更好地表达了良好的膜蛋白,密码子使用与表达宿主匹配的程度与成功率无关,GFP筛选和表达优化相结合对于生产生物化学可处理量的材料至关重要。

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