A Statistical Mechanical Deconvolution of the Differential Scanning Calorimetric Profiles of the Thermal Denaturation of Cyanomethemoglobin

被引:0
作者
Shahrokh Safarian
Masoud Alimohammadi
Abbas Ali Saberi
Ali Akbar Moosavi-Movahedi
机构
[1] University of Tehran,Department of Biology, Faculty of Science
[2] University of Tehran,Department of Physics, Faculty of Science
[3] University of Tehran,Institute of Biochemistry and Biophysics
来源
The Protein Journal | 2005年 / 24卷
关键词
Cyanomethemoglobin; differential scanning calorimetry; deconvolution; irreversible systems; grand canonical;
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摘要
A differential scanning calorimetric study of the thermal unfolding of horse cyanomethemoglobin (as an irreversible protein system) was carried out in phosphate-EDTA buffer (20 mM phosphate, 1 mM EDTA) pH 7.2. The calorimetric rescanning of the protein solution was found to be irreversible and the process unfolded state → final state appears to follow first order kinetic. Assuming the system to be comprised of n reversible states and one irreversible final state, the number of particles participating in the reversible states changes with time because they ultimately transit to the final irreversible denatured state. Hence, we carried out the deconvolution analysis using the grand canonical ensembles instead of just the canonical ensembles. This change was effected by introducing a correction term into the related equations which determines the outlet share of those particles exiting from the reversible states and converting into the final irreversible state. This approach provided an improved interpretation of the experimental data, which supports the following two-step process for the thermal denaturation of cyanomethemoglobin: α2β2 → (α + αβ + β)excited → αmelt + (αβ)melt + (βmelt.
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页码:175 / 181
页数:6
相关论文
共 75 条
[1]  
Cho K. C.(1980)undefined Biochim. Biophys. Acta 622 320-330
[2]  
Choy C. L.(1985)undefined Biochemistry 24 5899-5906
[3]  
Edge V.(1978)undefined Biopolymers 17 463-479
[4]  
Allewell N. M.(1979)undefined Biochemistry 18 24-28
[5]  
Sturtevant J. M.(1987)undefined Biochemistry 26 4063-4068
[6]  
Freire E.(1987)undefined Biochemistry 26 178-182
[7]  
Biltonen R. L.(1987)undefined Biopolymers 26 213-229
[8]  
Fujita S.(1954)undefined J. Phys. Chem. 58 110-120
[9]  
Go N.(1999)undefined Biophys. Chem. 79 199-204
[10]  
Imahori K.(1985)undefined Biochemistry 24 3842-3846