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Fingerprints of Conformational States of Human Hsp70 at Sub-THz Frequencies

机译:亚THz频率下人类Hsp70构象状态的指纹

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Large multidomain proteins occur in different conformational states to function. Detection and monitoring of these different structural states are of crucial interest for understanding the mechanics of proteins. Using computational methods, we show that different protein conformational states of the two-domain 70 kDa human Heat-shock protein (hHsp70), with similar vibrational density of states, lead to remarkably different far-IR spectra at acoustical frequencies (ν < 300 GHz). We found that the slow damped motions of the positively charged residues of hHsp70 contribute the most to collective IR active modes at low frequencies (ν < 300 GHz). We predicted that different structural states and functional modes of large proteins, such as hHsp70, might be detected in the sub-THz frequency range by single-molecule spectroscopy similar to the recent extraordinary acoustic Raman spectroscopy ( Wheaton , S. ; Nat. Photonics 2015 , 9 , 68?72).
机译:大型多结构域蛋白以不同的构象状态出现以起作用。检测和监测这些不同的结构状态对于理解蛋白质的机理至关重要。使用计算方法,我们显示了两个结构域的70 kDa人类热休克蛋白(hHsp70)的不同蛋白质构象状态,具有相似的状态振动密度,导致在声学频率(ν<300 GHz )。我们发现,hHsp70带正电荷的残基的缓慢阻尼运动在低频(ν<300 GHz)下对集体IR主动模式贡献最大。我们预测,类似于近期的非常规声学拉曼光谱,单分子光谱法可能在亚太赫兹频率范围内检测到大蛋白(例如hHsp70)的不同结构状态和功能模式(Wheaton,S .; Nat。Photonics 2015 ,9,68?72)。

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