Gilmanshin R, Dyer R B, Callender R H
Department of Physics, City College of the City University of New York, New York 10031, USA.
Protein Sci. 1997 Oct;6(10):2134-42. doi: 10.1002/pro.5560061008.
Temperature-induced denaturation transitions of different structural forms of apomyoglobin were studied monitoring intrinsic tryptophan fluorescence. It was found that the tryptophans are effectively screened from solvent both in native and acid forms throughout most of the temperature range tested. Thus, the tryptophans' surrounding do not show a considerable change in structure where major protein conformational transitions have been found in apomyoglobin using other techniques. At high temperatures and under strong destabilizing conditions, the tryptophans' fluorescence parameters show sigmoidal thermal denaturation. These results, combined with previous studies, show that the structure of this protein is heterogeneous, including native-like (tightly packed) and molten globule-like substructures that exhibit conformation (denaturation) transitions under different conditions of pH and temperature (and denaturants). The results suggest that the folding of this protein proceeds via two "nucleation" events whereby native-like contacts are formed. One of these events, which involves AGH "core" formation, appears to occur very early in the folding process, even before significant hydrophobic collapse in the rest of the protein molecule. From the current studies and other results, a rather detailed picture of the folding of myoglobin is presented, on the level of specific structures and their thermodynamical properties as well as formation kinetics.
通过监测色氨酸的固有荧光,研究了不同结构形式的脱辅基肌红蛋白的温度诱导变性转变。研究发现,在所测试的大部分温度范围内,无论是天然形式还是酸性形式,色氨酸都能有效地与溶剂隔离。因此,在使用其他技术发现脱辅基肌红蛋白发生主要蛋白质构象转变的地方,色氨酸周围的结构并没有明显变化。在高温和强烈的去稳定条件下,色氨酸的荧光参数呈现出S形热变性。这些结果与先前的研究相结合,表明该蛋白质的结构是异质的,包括天然样(紧密堆积)和熔球样亚结构,它们在不同的pH、温度(和变性剂)条件下表现出构象(变性)转变。结果表明,该蛋白质的折叠过程通过两个“成核”事件进行,在此过程中形成了天然样接触。其中一个事件涉及AGH“核心”的形成,似乎在折叠过程的早期就发生了,甚至在蛋白质分子其余部分发生显著的疏水塌缩之前。根据目前的研究和其他结果,从特定结构及其热力学性质以及形成动力学的层面,呈现了一幅相当详细的肌红蛋白折叠图景。