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二聚化在恶臭假单胞菌生物型B的酮甾体异构酶折叠和稳定性中的作用。

Roles of dimerization in folding and stability of ketosteroid isomerase from Pseudomonas putida biotype B.

作者信息

Kim D H, Nam G H, Jang D S, Yun S, Choi G, Lee H C, Choi K Y

机构信息

Division of Molecular Life Sciences, Pohang University of Science and Technology, Pohang, 790-784, Republic of Korea.

出版信息

Protein Sci. 2001 Apr;10(4):741-52. doi: 10.1110/ps.18501.

Abstract

Equilibrium and kinetic analyses have been performed to elucidate the roles of dimerization in folding and stability of KSI from Pseudomonas putida biotype B. Folding was reversible in secondary and tertiary structures as well as in activity. Equilibrium unfolding transition, as monitored by fluorescence and ellipticity measurements, could be modeled by a two-state mechanism without thermodynamically stable intermediates. Consistent with the two-state model, one dimensional (1D) NMR spectra and gel-filtration chromatography analysis did not show any evidence for a folded monomeric intermediate. Interestingly enough, Cys 81 located at the dimeric interface was modified by DTNB before unfolding. This inconsistent result might be explained by increased dynamic motion of the interface residues in the presence of urea to expose Cys 81 more frequently without the dimer dissociation. The refolding process, as monitored by fluorescence change, could best be described by five kinetic phases, in which the second phase was a bimolecular step. Because <30% of the total fluorescence change occurred during the first step, most of the native tertiary structure may be driven to form by the bimolecular step. During the refolding process, negative ellipticity at 225 nm increased very fast within 80 msec to account for >80% of the total amplitude. This result suggests that the protein folds into a monomer containing most of the alpha-helical structures before dimerization. Monitoring the enzyme activity during the refolding process could estimate the activity of the monomer that is not fully active. Together, these results stress the importance of dimerization in the formation and maintenance of the functional native tertiary structure.

摘要

已进行平衡和动力学分析,以阐明二聚化在恶臭假单胞菌生物型B的KSI折叠和稳定性中的作用。在二级和三级结构以及活性方面,折叠是可逆的。通过荧光和椭圆率测量监测的平衡去折叠转变,可以用无热力学稳定中间体的两态机制来模拟。与两态模型一致,一维(1D)NMR光谱和凝胶过滤色谱分析未显示出折叠单体中间体的任何证据。有趣的是,位于二聚体界面的Cys 81在去折叠前被DTNB修饰。这个不一致的结果可能是由于在尿素存在下界面残基的动态运动增加,使得Cys 81更频繁地暴露而二聚体未解离。通过荧光变化监测的重折叠过程,最好用五个动力学阶段来描述,其中第二个阶段是双分子步骤。由于第一步中总荧光变化的<30%发生,大多数天然三级结构可能由双分子步骤驱动形成。在重折叠过程中,225 nm处的负椭圆率在80毫秒内非常快速地增加,占总振幅的>80%。该结果表明,蛋白质在二聚化之前折叠成含有大部分α-螺旋结构的单体。监测重折叠过程中的酶活性可以估计未完全活化的单体的活性。总之,这些结果强调了二聚化在功能性天然三级结构形成和维持中的重要性。

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