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伴侣蛋白GroEL单体的折叠与解折叠途径及热力学参数的阐释

Folding and unfolding pathway of chaperonin GroEL monomer and elucidation of thermodynamic parameters.

作者信息

Puri Sarita, Chaudhuri Tapan K

机构信息

From Kusuma School of Biological Sciences, Indian Institute of Technology Delhi, Hauz Khas, New Delhi 110016, India.

From Kusuma School of Biological Sciences, Indian Institute of Technology Delhi, Hauz Khas, New Delhi 110016, India.

出版信息

Int J Biol Macromol. 2017 Mar;96:713-726. doi: 10.1016/j.ijbiomac.2016.12.054. Epub 2016 Dec 23.

Abstract

The conformation and thermodynamic stability of monomeric GroEL were studied by CD and fluorescence spectroscopy. GroEL denaturation with urea and dilution in buffer leads to formation of a folded GroEL monomer. The monomeric nature of this protein was verified by size-exclusion chromatography and native PAGE. It has a well-defined secondary and tertiary structure, folding activity (prevention of aggregation) for substrate protein and is resistant to proteolysis. Being a properly folded and reversibly refoldable, monomeric GroEL is amenable for the study of thermodynamic stability by unfolding transition methods. We present the equilibrium unfolding of monomeric GroEL as studied by urea and heat mediated unfolding processes. The urea mediated unfolding shows two transitions and a single transition in the heat mediated unfolding process. In the case of thermal unfolding, some residual structure unfolds at a higher temperature (70-75°C). The process of folding/unfolding is reversible in both cases. Analysis of folding/unfolding data provides a measure of ΔG, T, ΔH and ΔS of monomeric GroEL. The thermodynamic stability parameter ΔG is similar with both CD and intrinsic fluorescence i.e. 7.10±1.0kcal/mol. The calculated T, ΔH and ΔS from the thermal unfolding transition is 46±0.5°C, 43.3±0.1kcal/mol and 143.9±0.1cal/mol/k respectively.

摘要

通过圆二色光谱(CD)和荧光光谱研究了单体GroEL的构象和热力学稳定性。用尿素使GroEL变性并在缓冲液中稀释会导致形成折叠的GroEL单体。通过尺寸排阻色谱和非变性聚丙烯酰胺凝胶电泳(native PAGE)验证了该蛋白质的单体性质。它具有明确的二级和三级结构,对底物蛋白具有折叠活性(防止聚集),并且对蛋白水解具有抗性。作为一种正确折叠且可可逆重折叠的单体GroEL,适合通过去折叠转变方法研究其热力学稳定性。我们展示了通过尿素和热介导的去折叠过程研究的单体GroEL的平衡去折叠。尿素介导的去折叠显示出两个转变,而热介导的去折叠过程中显示出一个单一转变。在热去折叠的情况下,一些残余结构在较高温度(70 - 75°C)下展开。在这两种情况下,折叠/去折叠过程都是可逆的。对折叠/去折叠数据的分析提供了单体GroEL的ΔG、T、ΔH和ΔS的量度。热力学稳定性参数ΔG在CD和内在荧光测量中相似,即7.10±1.0千卡/摩尔。从热去折叠转变计算得到的T、ΔH和ΔS分别为46±0.5°C、43.3±0.1千卡/摩尔和143.9±0.1卡/摩尔/开尔文。

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