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FASTpp

机译:快速pp

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摘要

The biophysical stability is an important parameter for protein activity both in vivo and in vitro. Here we propose a method to analyze thermal melting of protein domains in lysates: Fast parallel proteolysis (FASTpp). Combining unfolding by a temperature gradient in a thermal cycler with simultaneous proteolytic cleavage of the unfolded state, we probed stability of single domains in lysates. We validated FASTpp on proteins from 10kDa to 240 kDa and monitored stabilisation and coupled folding and binding upon interaction with small-molecule ligands. Within a total reaction time of approximately 1 min, we probed subtle stability differences of point mutations with high sensitivity and in agreement with data obtained by intrinsic protein fluorescence. We anticipate a wide range of applications of FASTpp in biomedicine and protein engineering as it requires only standard laboratory equipment.
机译:生物物理稳定性是体内和体外蛋白质活性的重要参数。在这里,我们提出了一种分析裂解物中蛋白质结构域热熔解的方法:快速平行蛋白水解(FASTpp)。结合热循环仪中温度梯度的去折叠与未折叠态的同步蛋白水解裂解,我们探测了裂解物中单个结构域的稳定性。我们在 10 kDa 至 240 kDa 的蛋白质上验证了 FASTpp,并监测了与小分子配体相互作用时的稳定性以及偶联折叠和结合。在大约 1 分钟的总反应时间内,我们以高灵敏度探测了点突变的细微稳定性差异,并与内在蛋白质荧光获得的数据一致。我们预计FASTpp在生物医学和蛋白质工程中的广泛应用,因为它只需要标准的实验室设备。

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