使用poloxam407增强两种模型蛋白在搅拌溶液环境中的稳定性。

P L Wang, T P Johnston
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引用次数: 0

摘要

为了增强两种模型蛋白在溶液搅拌过程中的物理稳定性,我们研究了非离子表面活性剂poloxam407 (Pluronic F-127)与两种模型蛋白的相互作用。不含poloxam407的白介素-2和脲酶的水溶液在4℃下剧烈搅拌,在12小时和24小时的生物活性分别下降了50%以上。类似的水溶液在4℃下保持,分别含有10% w/w和0.5% w/w浓度的脲酶或白细胞介素-2和poloxam407,在不受干扰的情况下放置96小时,生物活性可以忽略不计。此外,当含有poloxam407的脲酶和白细胞介素-2的水溶液分别以10% w/w和0.5% w/w的浓度保持在4℃下搅拌96小时时,两种蛋白的生物活性均未见明显下降。此外,尿素酶被观察到在早期时间点具有增加的酶活性,无论流体动力学溶液条件和评估的poloxam407浓度如何。相比之下,当蛋白质的水溶液暴露于与脲酶溶液相似的流体动力学条件下,但不同的泊洛沙姆浓度(0% w/w vs 0.5% w/w)时,观察到白细胞介素-2的生物活性可以忽略不计。在含有2% w/w poloxam407的两种蛋白质的水溶液中,使用CD分光光度法得到的摩尔椭圆度[theta]与波长λ曲线的结果与在pH = 7磷酸盐缓冲液(PB)中得到的光谱非常一致。(摘要删节250字)
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Enhanced stability of two model proteins in an agitated solution environment using poloxamer 407.

To enhance the physical stability of two model proteins during solution agitation, we investigated the interaction of the nonionic surfactant poloxamer 407 (Pluronic F-127) with each protein. Vigorous agitation of aqueous solutions of interleukin-2 and urease which contained no poloxamer 407 and were maintained at 4 degrees C resulted in a greater than 50% loss in the biological activity at 12 and 24 hours, respectively. Similar aqueous solutions which were maintained at 4 degrees C and contained either urease or interleukin-2 and poloxamer 407 at a concentration of 10% w/w and 0.5% w/w, respectively lost negligible biological activity when left undisturbed for 96 hours. Moreover, when aqueous solutions of urease and interleukin-2 which contained poloxamer 407 at a concentration of 10% w/w and 0.5% w/w, respectively were maintained at 4 degrees C and subjected to agitation for 96 hours, no significant loss in the biological activity was observed for either protein. In addition, urease was observed to have increased enzymatic activity at early time points regardless of the hydrodynamic solution conditions and poloxamer 407 concentrations evaluated. In contrast, a negligible enhancement in the biological activity of interleukin-2 was observed when aqueous solutions of the protein were exposed to similar hydrodynamic conditions employed for urease solutions, but different poloxamer concentrations (0% w/w vs. 0.5% w/w). Results of molar ellipticity, [theta], versus wavelength, lambda, profiles using CD spectropolarimetry on individual aqueous solutions of both proteins containing 2% w/w poloxamer 407 were in close agreement to spectrum obtained with each protein in pH = 7 phosphate buffer (PB).(ABSTRACT TRUNCATED AT 250 WORDS)

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