Zou He-Chang, Yu Zhen-Hang, Wang Ye-Jing, Yang Jun-Mo, Zhou Hai-Meng, Meng Fan-Guo, Park Yong-Doo
Department of Biological Science and Biotechnology, Tsinghua University, Beijing 100084, P. R. China.
J Biomol Struct Dyn. 2007 Feb;24(4):359-68. doi: 10.1080/07391102.2007.10507125.
The monomeric state of creatine kinase (CK) was stably captured at the equilibrium state by employing cysteine residue modifications in the presence of a denaturant, and at a partially folded state. The partially folded monomeric CK (PF-CK) was aggregated with kinetic order, which was mainly caused by the hydrophobic surface interactions between the CK subunits. The artificial chaperone, described as a SDS-cyclodextrin, was applied to prevent aggregation as well as to refold the PF-CK: SDS treatment onto the monomeric CK can significantly block aggregation and can be successfully refolded in the solutions containing cyclodextrins and DTT. Three types of cyclodextrins such as alpha-, beta-, and gamma-cyclodextrins were applied to strip SDS from the enzyme molecule, and each kinetic course was measured. The intrinsic fluorescence changes showed that reactivation occurred and this accompanied the conformational changes. The size exclusion chromatography detected the variously trapped monomeric CKs such as the thiol residue modified PF-CK, the SDS-binding PF-CK, the cyclodextrin treated PF-CK, and the DTT treated SDS-binding PF-CK. Our study demonstrated monomer CK aggregation for the first time; we also demonstrated the complex reassociation of CK during refolding with the aid of the SDS-cyclodextrin, and these pathways followed first-order kinetics.
在变性剂存在的情况下,通过半胱氨酸残基修饰,在部分折叠状态下,肌酸激酶(CK)的单体状态在平衡状态下被稳定捕获。部分折叠的单体CK(PF-CK)以动力学顺序聚集,这主要是由CK亚基之间的疏水表面相互作用引起的。一种被称为SDS-环糊精的人工伴侣被用于防止聚集以及使PF-CK重新折叠:对单体CK进行SDS处理可以显著阻止聚集,并且可以在含有环糊精和二硫苏糖醇(DTT)的溶液中成功重新折叠。三种类型的环糊精,如α-、β-和γ-环糊精,被用于从酶分子上去除SDS,并测量每个动力学过程。内在荧光变化表明发生了再激活,并且这伴随着构象变化。尺寸排阻色谱法检测到了各种被捕获的单体CK,如巯基残基修饰的PF-CK、结合SDS的PF-CK、经环糊精处理的PF-CK以及经DTT处理的结合SDS的PF-CK。我们的研究首次证明了单体CK的聚集;我们还证明了在借助SDS-环糊精重新折叠过程中CK的复杂重新缔合,并且这些途径遵循一级动力学。