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Pressure response of protein backbone structure. Pressure-induced amide 15N chemical shifts in BPTI.

机译:蛋白质骨架结构的压力响应。 BPTI中压力诱导的酰胺15N化学位移。

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摘要

The effect of pressure on amide 15N chemical shifts was studied in uniformly 15N-labeled basic pancreatic trypsin inhibitor (BPTI) in 90%1H2O/10%2H2O, pH 4.6, by 1H-15N heteronuclear correlation spectroscopy between 1 and 2,000 bar. Most 15N signals were low field shifted linearly and reversibly with pressure (0.468 +/- 0.285 ppm/2 kbar), indicating that the entire polypeptide backbone structure is sensitive to pressure. A significant variation of shifts among different amide groups (0-1.5 ppm/2 kbar) indicates a heterogeneous response throughout within the three-dimensional structure of the protein. A tendency toward low field shifts is correlated with a decrease in hydrogen bond distance on the order of 0.03 A/2 kbar for the bond between the amide nitrogen atom and the oxygen atom of either carbonyl or water. The variation of 15N shifts is considered to reflect site-specific changes in phi, psi angles. For beta-sheet residues, a decrease in psi angles by 1-2 degrees/2 kbar is estimated. On average, shifts are larger for helical and loop regions (0.553 +/- 0.343 and 0.519 +/- 0.261 ppm/2 kbar, respectively) than for beta-sheet (0.295 +/- 0.195 ppm/2 kbar), suggesting that the pressure-induced structural changes (local compressibilities) are larger in helical and loop regions than in beta-sheet. Because compressibility is correlated with volume fluctuation, the result is taken to indicate that the volume fluctuation is larger in helical and loop regions than in beta-sheet. An important aspect of the volume fluctuation inferred from pressure shifts is that they include motions in slower time ranges (less than milliseconds) in which many biological processes may take place.
机译:通过在1至2,000 bar之间的1H-15N异核相关光谱法,在90%1H2O / 10%2H2O(pH 4.6)中均匀地用15N标记的碱性胰胰蛋白酶抑制剂(BPTI)中研究了压力对酰胺15N化学位移的影响。大多数15N信号在压力(0.468 +/- 0.285 ppm / 2 kbar)的作用下呈线性且可逆的低场位移,表明整个多肽主链结构对压力敏感。不同酰胺基之间的位移(0-1.5 ppm / 2 kbar)的显着变化表明在蛋白质的三维结构中始终存在异质响应。对于酰胺氮原子和羰基或水的氧原子之间的键,低场移的趋势与氢键距离的减少相关,该氢键距离的减少量为0.03 A / 2 kbar。 15N位移的变化被认为反映了phi,psi角度的特定位置变化。对于β-折叠残留物,估计psi角减小1-2度/ 2 kbar。平均而言,螺旋区和环区的位移(分别为0.553 +/- 0.343和0.519 +/- 0.261 ppm / 2 kbar)要比β-折叠(0.295 +/- 0.195 ppm / 2 kbar)大。压力引起的结构变化(局部可压缩性)在螺旋区和环区比在β-折叠区更大。由于可压缩性与体积波动相关,因此得出的结果表明,螺旋区和环形区的体积波动比β-sheet大。由压力变化推断出的体积波动的一个重要方面是,它们包括可能发生许多生物过程的较慢时间范围(小于毫秒)的运动。

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