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High-pressure studies of aggregation of recombinant human interleukin-1 receptor antagonist: Thermodynamics kinetics and application to accelerated formulation studies

机译:重组人白介素1受体拮抗剂聚集体的高压研究:热力学动力学及其在加速制剂研究中的应用

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摘要

Recombinant human interleukin-1 receptor antagonist (IL-1ra) in aqueous solutions unfolds and aggregates when subjected to hydrostatic pressures greater than about 180 MPa. This study examined the mechanism and thermodynamics of pressure-induced unfolding and aggregation of IL-1ra. The activation free energy for growth of aggregates (ΔGaggregation) was found to be 37 ± 3 kJ/mol, whereas the activation volume (ΔVaggregation) was −120 ± 20 mL/mol. These values compare closely with equilibrium values for denaturation: The free energy for denaturation, ΔGdenaturation, was 20 ± 5 kJ/mol, whereas the partial specific volume change for denaturation, ΔVdenaturation, was −110 ± 30 mL/mol. When IL-1ra begins to denature at pressures near 140 MPa, cysteines that are normally buried in the native state become exposed. Under oxidizing conditions, this results in the formation of covalently cross-linked aggregates containing nonnative, intermolecular disulfide bonds. The apparent activation free energy for nucleation of aggregates, ΔGnuc, was 42 ± 4 kJ/mol, and the activation volume for nucleation, ΔVnuc,was −175 ± 37 mL/mol, suggesting that a highly solvent-exposed conformation is needed for nucleation. We hypothesize that the large specific volume of IL-1ra, 0.752 ± 0.004 mL/g, coupled with its relatively low conformational stability, leads to its susceptibility to denaturation at relatively low pressures. The positive partial specific adiabatic compressibility of IL-1ra, 4.5 ± 0.7 ± 10−12 cm2/dyn, suggests that a significant component of the ΔVdenaturation is attributable to the elimination of solvent-free cavities. Lastly, we propose that hydrostatic pressure is a useful variable to conduct accelerated formulation studies of therapeutic proteins.
机译:当承受大于约180 MPa的静水压力时,水溶液中的重组人白介素1受体拮抗剂(IL-1ra)会展开并聚集。这项研究检查了压力诱导的IL-1ra展开和聚集的机制和热力学。发现聚集体生长的活化自由能(ΔG聚集)为37±3 kJ / mol,而活化体积(ΔV聚集)为-120 ±20毫升/摩尔这些值与变性的平衡值非常接近:变性的自由能ΔGdenaturation为20±5 kJ / mol,而变性的部分比容变化ΔVdenaturation为-110±30 mL / mol。当IL-1ra在接近140 MPa的压力下开始变性时,通常以天然状态掩埋的半胱氨酸暴露出来。在氧化条件下,这导致形成包含非天然分子间二硫键的共价交联的聚集体。聚集体成核的表观活化自由能ΔG nuc为42±4 kJ / mol,成核活化量ΔV nuc为-175 ±37 mL / mol,表明成核需要高度溶剂暴露的构象。我们假设IL-1ra的大比容为0.752±0.004 mL / g,再加上相对较低的构象稳定性,导致其在较低压力下易变性。 IL-1ra的部分绝热正压缩率为4.5±0.7±10 −12 cm 2 / dyn,表明ΔV变性的重要组成部分是由于消除了无溶剂的腔体。最后,我们提出静水压力是进行治疗性蛋白质加速制剂研究的有用变量。

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