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利用刺激响应性聚合物的分子组装体对牛碳酸酐酶进行人工伴侣辅助重折叠

Artificial chaperone-assisted refolding of bovine carbonic anhydrase using molecular assemblies of stimuli-responsive polymers.

作者信息

Yoshimoto Noriko, Hashimoto Takuya, Felix Matundu Menayame, Umakoshi Hiroshi, Kuboi Ryoichi

机构信息

Department of Chemical Science and Engineering, Graduate School of Engineering Science, Osaka University, 1-3 Machikaneyama-cho, Toyonaka, Osaka 560-8531, Japan.

出版信息

Biomacromolecules. 2003 Nov-Dec;4(6):1530-8. doi: 10.1021/bm015662a.

Abstract

An artificial chaperone, which can decrease the protein aggregation and increase the reactivation yield of denatured protein in a fashion similar to natural chaperone, was newly developed using stimuli-responsive polymers. It has previously been reported that the addition of poly(propylene oxide)-phenyl-poly(ethylene glycol) (PPOn-Ph-PEG) with the unit number of PPO (n) 33 could enhance the refolding of bovine carbonic anhydrase (Kuboi et al. J. Chromatogr. B 2000, 243, 213). PPO-Ph-PEG with a large PPO chain (n = 50) was synthesized and the surface properties were characterized by both the relative fluorescence intensity of 1-anilino-8-naphthalene sulfonate (ANS) and the fluidity determined by diphenylhexatriene (DPH). The variation of ANS intensity and DPH fluidity is shown in a diagram as functions of temperature and polymer concentration. The high values of ANS intensity and fluidity of PPO50-Ph-PEG were obtained in a relatively wide conditional range (more than 0.08 mM and more than 15 degrees C) although the conditions showing the high values of PPO33-Ph-PEG were restricted (more than 0.1 mM and more than 40 degrees C). It was also found that molecular assemblies of PPOn-Ph-PEG with diameters of 7-18 nm were formed in the above conditions. On the basis of the surface properties of their polymer self-assemblies, the possibility of using them as an artificial chaperone was investigated. The effect of the addition of PPOn-Ph-PEG on the reactivation yield of a model protein, carbonic anhydrase from bovine (CAB), and the optical density of the solution was examined at various temperatures and concentrations. The reactivation yield of CAB was strongly enhanced and the aggregate formation (the optical density) was suppressed by adding PPOn-Ph-PEG in the above conditions, which show high ANS intensity and DPH fluidity. Especially in the presence of 0.1 mM PPO50-Ph-PEG, the reactivation yield of CAB reached approximately 100% at 40-55 degrees C. It was thus found that self-assemblies of the present polymer could be utilized as an artificial chaperone by selecting suitable stimuli conditions.

摘要

利用刺激响应聚合物新开发了一种人工伴侣分子,它能以类似于天然伴侣分子的方式减少蛋白质聚集并提高变性蛋白质的复性产率。此前有报道称,添加聚环氧丙烷-苯基-聚乙二醇(PPOn-Ph-PEG),其中聚环氧丙烷(PPO)的单元数(n)为33,可增强牛碳酸酐酶的复性(久保井等人,《色谱杂志B》,2000年,243卷,213页)。合成了具有大PPO链(n = 50)的PPO-Ph-PEG,并通过1-苯胺基-8-萘磺酸盐(ANS)的相对荧光强度和由二苯基己三烯(DPH)测定的流动性来表征其表面性质。ANS强度和DPH流动性的变化以图表形式表示为温度和聚合物浓度的函数。尽管显示PPO33-Ph-PEG高值的条件受到限制(大于0.1 mM且大于40℃),但在相对较宽的条件范围内(大于0.08 mM且大于15℃)获得了PPO50-Ph-PEG的高ANS强度和流动性值。还发现在上述条件下形成了直径为7 - 18 nm的PPOn-Ph-PEG分子聚集体。基于其聚合物自组装体的表面性质,研究了将它们用作人工伴侣分子的可能性。在不同温度和浓度下,研究了添加PPOn-Ph-PEG对模型蛋白牛碳酸酐酶(CAB)复性产率和溶液光密度的影响。在上述显示高ANS强度和DPH流动性的条件下,添加PPOn-Ph-PEG可显著提高CAB的复性产率并抑制聚集体形成(光密度)。特别是在存在0.1 mM PPO50-Ph-PEG的情况下,CAB在40 - 55℃时的复性产率达到约100%。因此发现,通过选择合适的刺激条件,本聚合物的自组装体可作为人工伴侣分子使用。

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