Kinetics of Thermal Denaturation and Aggregation of Bovine Serum Albumin

被引:179
作者
Borzova, Vera A. [1 ]
Markossian, Kira A. [1 ]
Chebotareva, Natalia A. [1 ]
Kleymenov, Sergey Yu. [1 ,2 ]
Poliansky, Nikolay B. [3 ]
Muranov, Konstantin O. [3 ]
Stein-Margolina, Vita A. [1 ]
Shubin, Vladimir V. [4 ]
Markov, Denis I. [1 ]
Kurganov, Boris I. [1 ]
机构
[1] Russian Acad Sci, Dept Struct Biochem Prot, Bach Inst Biochem, Biotechnol Res Ctr, Moscow, Russia
[2] Russian Acad Sci, Dept Biophys, Koltsov Inst Dev Biol, Moscow, Russia
[3] Russian Acad Sci, Dept Chem & Biol Proc Kinet, Emanuel Inst Biochem Phys, Moscow, Russia
[4] Russian Acad Sci, Dept Biochem Chloroplast, Bach Inst Biochem, Biotechnol Res Ctr, Moscow, Russia
来源
PLOS ONE | 2016年 / 11卷 / 04期
基金
俄罗斯基础研究基金会;
关键词
PROTEIN SECONDARY STRUCTURE; DYNAMIC LIGHT-SCATTERING; CIRCULAR-DICHROISM; STRUCTURAL-CHANGES; INCLUSION-BODIES; ANALYTICAL ULTRACENTRIFUGATION; HETEROGENEOUS NUCLEATION; CONFORMATIONAL-CHANGES; FTIR SPECTROSCOPY; DISULFIDE BRIDGES;
D O I
10.1371/journal.pone.0153495
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Thermal aggregation of bovine serum albumin (BSA) has been studied using dynamic light scattering, asymmetric flow field-flow fractionation and analytical ultracentrifugation. The studies were carried out at fixed temperatures (60 degrees C, 65 degrees C, 70 degrees C and 80 degrees C) in 0.1 M phosphate buffer, pH 7.0, at BSA concentration of 1 mg/ml. Thermal denaturation of the protein was studied by differential scanning calorimetry. Analysis of the experimental data shows that at 65 degrees C the stage of protein unfolding and individual stages of protein aggregation are markedly separated in time. This circumstance allowed us to propose the following mechanism of thermal aggregation of BSA. Protein unfolding results in the formation of two forms of the non-native protein with different propensity to aggregation. One of the forms (highly reactive unfolded form, U-hr) is characterized by a high rate of aggregation. Aggregation of U-hr leads to the formation of primary aggregates with the hydrodynamic radius (R-h,R- 1) of 10.3 nm. The second form (low reactive unfolded form, U-lr) participates in the aggregation process by its attachment to the primary aggregates produced by the U-hr form and possesses ability for self-aggregation with formation of stable small-sized aggregates (A(st)). At complete exhaustion of U-lr, secondary aggregates with the hydrodynamic radius (R-h,R- 2) of 12.8 nm are formed. At 60 degrees C the rates of unfolding and aggregation are commensurate, at 70 degrees C the rates of formation of the primary and secondary aggregates are commensurate, at 80 degrees C the registration of the initial stages of aggregation is complicated by formation of large-sized aggregates.
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