Xia Zhicheng, Nguyen Bao D, Brunori Maurizio, Cutruzzolà Francesca, La Mar Gerd N
University of California, Davis, Department of Chemistry, Davis, California 92697, USA.
Biophys J. 2005 Dec;89(6):4149-58. doi: 10.1529/biophysj.105.062398. Epub 2005 Sep 8.
Two-dimensional 1H NMR spectroscopy over a range of temperature through thermal unfolding has been applied to the low-spin, ferric cyanide complex of myoglobin from Aplysia limacina to search for intermediates in the unfolding and to characterize the effect of temperature on the magnetic properties and electronic structure of the heme iron. The observation of strictly linear behavior from 5 to 80 C degrees through the unfolding transition for all hyperfine-shifted resonances indicates the absence of significant populations of intermediate states to the cooperative unfolding with Tm approximately 80 degrees C. The magnetic anisotropies and orientation of the magnetic axes for the complete range of temperatures were also determined for the complex. The anisotropies have very similar magnitudes, and exhibit the expected characteristic temperature dependence, previously observed in the isoelectronic sperm whale myoglobin complex. In contrast to sperm whale Mb, where the orientation of the magnetic axis was completely temperature-independent, the tilt of the major magnetic axis, which correlates with the Fe-CN tilt, decreases at high temperature in Aplysia limacina Mb, indicating a molecular structure that is conserved with temperature, although more plastic than that of sperm whale Mb. The pattern of contact shifts reflects a conserved Fe-His(F8) bond and pi-spin delocalization into the heme, as expected for the orientation of the axial His imidazole.
通过热变性在一系列温度下对来自海兔肌红蛋白的低自旋铁氰化物配合物进行二维¹H NMR光谱分析,以寻找变性过程中的中间体,并表征温度对血红素铁的磁性和电子结构的影响。对于所有超精细位移共振,在5至80摄氏度范围内通过变性转变观察到严格的线性行为,这表明不存在大量的中间态,协同变性的熔点约为80摄氏度。还确定了该配合物在整个温度范围内的磁各向异性和磁轴方向。各向异性具有非常相似的大小,并表现出预期的特征温度依赖性,这在等电子的抹香鲸肌红蛋白配合物中曾被观察到。与抹香鲸肌红蛋白不同,其磁轴方向完全与温度无关,而在海兔肌红蛋白中,与Fe-CN倾斜相关的主磁轴倾斜在高温下减小,这表明分子结构在温度变化时是保守的,尽管比抹香鲸肌红蛋白更具可塑性。接触位移模式反映了保守的Fe-His(F8)键以及π自旋离域到血红素中,这与轴向His咪唑的取向预期一致。