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大豆过氧化物酶的热变性。适当的高变性剂浓度可诱导协同作用,从而能够正确测量热力学参数。

Thermal unfolding of soybean peroxidase. Appropriate high denaturant concentrations induce cooperativity allowing the correct measurement of thermodynamic parameters.

作者信息

Kamal J K Amisha, Nazeerunnisa Mahammed, Behere Digambar V

机构信息

Department of Chemical Sciences, Tata Institute of Fundamental Research, Homi Bhabha Road, Colaba, Mumbai 400 005, India.

出版信息

J Biol Chem. 2002 Oct 25;277(43):40717-21. doi: 10.1074/jbc.M208129200. Epub 2002 Aug 20.

Abstract

We have earlier reported that both guanidine hydrochloride (GdnHCl)-induced and heat-induced unfolding of seed coat soybean peroxidase (SBP), monitored by far UV CD, show single step transition. However, although GdnHCl-induced unfolding follows a two-state pathway, the heat-induced denaturation proceeds through intermediates as indicated by the very low cooperativity of transition. In the former case, analysis of the data based on the two-state model gives true thermodynamic parameters, whereas underestimated values are obtained in the latter case. Available complex equations also cannot be applied for the analysis of the thermal unfolding of SBP due to the absence of separate transitions for the intermediates. In the present study, we report a method to obtain true thermodynamic parameters from thermal transition curves of SBP using the two-state model. When SBP is subjected to thermal unfolding at high GdnHCl concentrations (5.8-6.9 M), cooperative behavior is observed, which allowed the analysis by the two-state model to determine their thermodynamic parameters. We then obtained the thermodynamic parameters in the absence of GdnHCl by extrapolating the graph of linear dependence of DeltaH(m) on T(m) to the T(m) corresponding to 0 m GdnHCl. Another key point for checking the validity of our method was the fact that the unfolded state of SBP generated by either heat or GdnHCl is the same by which we could cross-check our results with that obtained from GdnHCl unfolding. Having obtained the true thermodynamic parameters, we report a detailed thermodynamic study of SBP. Further we address the effect of heme in the thermal unfolding mechanism of SBP.

摘要

我们之前报道过,通过远紫外圆二色光谱监测,盐酸胍(GdnHCl)诱导的和热诱导的种皮大豆过氧化物酶(SBP)的去折叠均显示单步转变。然而,尽管GdnHCl诱导的去折叠遵循两态途径,但热诱导变性通过中间体进行,这由非常低的转变协同性表明。在前一种情况下,基于两态模型对数据进行分析可得到真实的热力学参数,而在后一种情况下得到的是低估的值。由于中间体不存在单独的转变,现有的复杂方程也不能用于分析SBP的热去折叠。在本研究中,我们报道了一种使用两态模型从SBP的热转变曲线获得真实热力学参数的方法。当SBP在高浓度GdnHCl(5.8 - 6.9 M)下进行热去折叠时,观察到协同行为,这使得可以通过两态模型进行分析以确定其热力学参数。然后,通过将ΔH(m)对T(m)的线性依赖关系图外推到对应于0 M GdnHCl的T(m),我们获得了无GdnHCl时的热力学参数。检查我们方法有效性的另一个关键点是,热或GdnHCl产生的SBP的未折叠状态是相同的,通过这一点我们可以将我们的结果与从GdnHCl去折叠获得的结果进行交叉核对。获得真实的热力学参数后,我们报道了对SBP的详细热力学研究。此外,我们探讨了血红素在SBP热去折叠机制中的作用。

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