首页> 外文OA文献 >Characterization of the Temperature- and Pressure-Induced Inverse and Reentrant Transition of the Minimum Elastin-Like Polypeptide GVG(VPGVG) by DSC, PPC, CD, and FT-IR Spectroscopy
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Characterization of the Temperature- and Pressure-Induced Inverse and Reentrant Transition of the Minimum Elastin-Like Polypeptide GVG(VPGVG) by DSC, PPC, CD, and FT-IR Spectroscopy

机译:DSC,PPC,CD和FT-IR光谱法表征温度和压力诱导的最小弹性蛋白样多肽GVG(VPGVG)的反向和折返转变

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摘要

We investigated the temperature- and pressure-dependent structure and phase behavior of a solvated oligopeptide, GVG(VPGVG), which serves as a minimalistic elastin-like model system, over a large region of the thermodynamic phase field, ranging from 2 to 120°C and from ambient pressure up to ∼10 kbar, applying various spectroscopic (CD, FT-IR) and thermodynamic (DSC, PPC) measurements. We find that this octapeptide behaves as a two-state system which undergoes the well-known inverse-temperature folding transition occurring at T ≈ 36°C, and, in addition, a slow trend reversal at higher temperatures, finally leading to a reentrant unfolding close to the boiling point of water. Furthermore, the pressure-dependence of the folding/unfolding transition was studied to yield a more complete picture of the p, T-stability diagram of the system. A molecular-level picture of these processes, in particular on the role of water for the folding and unfolding events of the peptide, presented with the help of molecular-dynamics simulations, is presented in a companion article in this issue.
机译:我们研究了溶剂化寡肽GVG(VPGVG)的温度和压力依赖性结构和相行为,该肽作为极简弹性蛋白样模型系统,在2至120°的热力学相场的较大区域内C,从环境压力到约10 kbar,采用各种光谱(CD,FT-IR)和热力学(DSC,PPC)测量。我们发现该八肽表现为一个两态系统,该系统经历了众所周知的逆温度折叠转变,该转变在T≈36°C时发生,此外,在较高温度下缓慢的趋势逆转,最终导致凹角展开接近水的沸点。此外,研究了折叠/展开转变的压力依赖性,以得到系统p,T稳定性图的更完整图片。这些过程的分子水平图,特别是水在肽折叠和展开事件中的作用,在分子动力学模拟的帮助下,在本期另一篇文章中提供。

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