Dipartimento di Chimica, Università di Perugia, Via Elce di Sotto, 8, I-06123 Perugia, Italy.
Chemical and Materials Sciences Division at Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831, USA and Department of Chemistry, University of Tennessee, Knoxville, Tennessee 37996, USA.
J Chem Phys. 2013 Dec 14;139(22):225101. doi: 10.1063/1.4838355.
The low frequency depolarized Raman spectra of 100 mg/ml aqueous solutions of hen egg white lysozyme (HEWL) have been collected in the 25-85 °C range. Short and long exposures to high temperatures have been used to modulate the competition between the thermally induced reversible and irreversible denaturation processes. A peculiar temperature evolution of spectra is evidenced under prolonged exposure of the protein solution at temperatures higher than 65 °C. This result is connected to the self-assembling of polypeptide chains and testifies the sensitivity of the technique to the properties of both protein molecule and its surrounding. Solvent free spectra have been obtained after subtraction of elastic and solvent components and assigned to a genuine vibrational contribution of hydrated HEWL. A straight similarity is observed between the solvent-free THz Raman feature and the vibrational density of states as obtained by molecular dynamics simulations; according to this, we verify the relation between this spectroscopic observable and the effective protein volume, and distinguish the properties of this latter respect to those of the hydration shell in the pre-melting region.
已在 25-85°C 范围内收集了 100mg/ml 浓度的鸡卵清白溶菌酶(HEWL)水溶液的低频去极化拉曼光谱。采用短时间和长时间暴露于高温的方法来调节热诱导的可逆和不可逆变性过程之间的竞争。在将蛋白质溶液长时间暴露于高于 65°C 的温度下时,光谱表现出特殊的温度演化。该结果与多肽链的自组装有关,并证明了该技术对蛋白质分子及其周围环境性质的敏感性。在减去弹性和溶剂成分后,获得了无溶剂的太赫兹拉曼光谱,并将其分配给水合 HEWL 的真实振动贡献。无溶剂太赫兹拉曼特征与通过分子动力学模拟获得的振动态密度之间存在直接的相似性;根据这一点,我们验证了该光谱可观测量与有效蛋白质体积之间的关系,并区分了后者的性质与预熔化区域中水合壳的性质。