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首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >An experimental survey of the transition between two-state and downhill protein folding scenarios
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An experimental survey of the transition between two-state and downhill protein folding scenarios

机译:两种状态下坡蛋白质折叠方案之间过渡的实验研究

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摘要

A kinetic and thermodynamic survey of 35 WW domain sequences is used in combination with a model to discern the energetic requirements for the transition from two-state folding to downhill folding. The sequences used exhibit a 600-fold range of folding rates at the temperature of maximum folding rate. Very stable proteins can achieve complete downhill folding when the temperature is lowered sufficiently below the melting temperature, and then at even lower temperatures they become two-state folders again because of cold denaturation. Less stable proteins never achieve a sufficient bias to fold downhill because of the onset of cold denaturation. The model, considering both heat and cold denaturation, reveals that to achieve incipient downhill folding (barrier < 3 RT) or downhill folding (no barrier), the WW domain average melting temperatures have to be ≥50℃ for incipient downhill folding and ≥90℃ for downhill folding.
机译:对35个WW域序列的动力学和热力学研究与模型结合使用,以识别从二态折叠到下坡折叠过渡的能量要求。所使用的序列在最大折叠速率的温度下表现出600倍的折叠速率范围。当温度充分降低到低于融解温度时,非常稳定的蛋白质可以实现完全的下坡折叠,然后在更低的温度下,由于冷变性,它们再次变为两态折叠。由于冷变性的发生,稳定性较差的蛋白质永远无法获得足够的倾斜度来折叠。考虑到热和冷的变性,该模型表明,要实现初期的下坡折叠(屏障<3 RT)或下坡的折叠(无屏障),WW领域的平均熔融温度必须为≥50℃才能达到初期的下坡折叠且≥90 ℃用于下坡折叠。

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