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CPR3的去折叠在活性位点开始,并通过两个中间体进行。

Unfolding of CPR3 Gets Initiated at the Active Site and Proceeds via Two Intermediates.

作者信息

Shukla Vaibhav Kumar, Singh Jai Shankar, Vispute Neha, Ahmad Basir, Kumar Ashutosh, Hosur Ramakrishna V

机构信息

UM-DAE-Centre for Excellence in Basic Sciences, University of Mumbai, Kalina Campus, Mumbai, India.

Department of Biosciences and Bioengineering, Indian Institute of Technology, Mumbai, India.

出版信息

Biophys J. 2017 Feb 28;112(4):605-619. doi: 10.1016/j.bpj.2016.12.020.

Abstract

Cyclophilin catalyzes the ubiquitous process "peptidyl-prolyl cis-trans isomerization," which plays a key role in protein folding, regulation, and function. Here, we present a detailed characterization of the unfolding of yeast mitochondrial cyclophilin (CPR3) induced by urea. It is seen that CPR3 unfolding is reversible and proceeds via two intermediates, I1 and I2. The I1 state has native-like secondary structure and shows strong anilino-8-naphthalenesulphonate binding due to increased exposure of the solvent-accessible cluster of non-polar groups. Thus, it has some features of a molten globule. The I2 state is more unfolded, but it retains some residual secondary structure, and shows weak anilino-8-naphthalenesulphonate binding. Chemical shift perturbation analysis by H-N heteronuclear single quantum coherence spectra reveals disruption of the tertiary contacts among the regions close to the active site in the first step of unfolding, i.e., the N-I1 transition. Both of the intermediates, I1 and I2, showed a propensity to self-associate under stirring conditions, but their kinetic profiles are different; the native protein did not show any such tendency under the same conditions. All these observations could have significant implications for the function of the protein.

摘要

亲环蛋白催化普遍存在的“肽基 - 脯氨酰顺反异构化”过程,该过程在蛋白质折叠、调节和功能中起关键作用。在此,我们详细描述了尿素诱导的酵母线粒体亲环蛋白(CPR3)的去折叠过程。可以看出,CPR3的去折叠是可逆的,并通过两个中间体I1和I2进行。I1状态具有类似天然的二级结构,由于非极性基团的溶剂可及簇暴露增加,显示出强烈的8 - 苯胺基萘磺酸盐结合。因此,它具有一些熔球的特征。I2状态更加去折叠,但保留了一些残余的二级结构,并显示出较弱的8 - 苯胺基萘磺酸盐结合。通过H - N异核单量子相干光谱进行的化学位移扰动分析表明,在去折叠的第一步,即N - I1转变中,靠近活性位点区域之间的三级接触被破坏。中间体I1和I2在搅拌条件下都有自缔合的倾向,但它们的动力学曲线不同;在相同条件下,天然蛋白质没有表现出任何这种倾向。所有这些观察结果可能对该蛋白质的功能有重大影响。

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