Burova T V, Beckert V, Uhlmann H, Ristau O, Bernhardt R, Pfeil W
Institute of Biochemical Physics, Russian Academy of Sciences, Moscow, Russia.
Protein Sci. 1996 Sep;5(9):1890-7. doi: 10.1002/pro.5560050915.
Adrenodoxin and the mutants at the positions T54, H56, D76, Y82, and C95, as well as the deletion mutants 4-114 and 4-108, were studied by high-sensitivity scanning microcalorimetry, limited proteolysis, and absorption spectroscopy. The mutants show thermal transition temperatures ranging from 46 to 56 degrees C, enthalpy changes from 250 to 370 kJ/mol, and heat capacity change delta Cp = 7.28 +/- 0.67 kJ/mol/K, except H56R. The amino acid replacement H56R produces substantial local changes in the region around positions 56 and Y82, as indicated by reduced heat capacity change (delta Cp = 4.29 +/- 0.37 kJ/mol/K) and enhanced fluorescence. Deletion mutant 4-108 is apparently more stable than the wild type, as judged by higher specific denaturation enthalpy and resistance toward proteolytic degradation. No simple correlation between conformational stability and functional properties could be found.
通过高灵敏度扫描量热法、有限蛋白酶解和吸收光谱法研究了肾上腺皮质铁氧还蛋白及其T54、H56、D76、Y82和C95位点的突变体,以及缺失突变体4-114和4-108。除H56R外,这些突变体的热转变温度范围为46至56℃,焓变为250至370kJ/mol,热容变化ΔCp = 7.28±0.67kJ/mol/K。氨基酸替换H56R在56和Y82位点周围区域产生了显著的局部变化,表现为热容变化降低(ΔCp = 4.29±0.37kJ/mol/K)和荧光增强。从较高的比变性焓和对蛋白水解降解的抗性判断,缺失突变体4-108显然比野生型更稳定。未发现构象稳定性与功能特性之间存在简单的相关性。