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Pressure- and temperature-induced unfolding and aggregation of recombinant human interferon-gamma: a Fourier transform infrared spectroscopy study.

机译:压力和温度诱导的重组人干扰素-γ的折叠和聚集:傅立叶变换红外光谱研究。

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摘要

The effect of hydrostatic pressure on the secondary structure of recombinant human interferon-gamma (rhIFN-gamma) and its biologically inactive truncated form rhIFN-Delta C15 has been studied using Fourier-transform IR (FTIR) spectroscopy. In situ observation of the pressure-induced changes using the diamond anvil cell shows that the alpha-helical structure is mainly transformed into disordered structure at high pressure. Increasing pressure also induces the formation of a gel. Addition of 0.5 M MgCl(2) significantly reduces the pressure stability. Releasing the pressure below 300 MPa results in the formation of intermolecular antiparallel beta-sheets, which is seldom observed. This suggests that the intermolecular beta-sheet of rhIFN-gamma is stabilized by electrostatic interactions that are disrupted at high pressure. For comparison we also studied the effect of temperature. Temperature-induced changes reflect extensive transformation of alpha-helical structure into intermolecular antiparallel beta-sheet, as is usually observed for most proteins.
机译:已经使用傅立叶变换红外光谱(FTIR)研究了静水压力对重组人干扰素-γ(rhIFN-γ)的二级结构及其生物活性截短形式的rhIFN-Delta C15的影响。使用金刚石砧盒对压力引起的变化进行原位观察表明,在高压下,α-螺旋结构主要转变为无序结构。压力的增加也引起凝胶的形成。添加0.5 M MgCl(2)会大大降低压力稳定性。将压力释放至低于300 MPa会导致形成分子间反平行的β-折叠,很少观察到。这表明rhIFN-γ的分子间β-折叠通过在高压下破坏的静电相互作用而稳定。为了进行比较,我们还研究了温度的影响。温度引起的变化反映了α-螺旋结构向分子间反平行β-折叠的广泛转变,这在大多数蛋白质中通常观察到。

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