Lecomte J T, Cocco M J
Department of Chemistry, Pennsylvania State University, University Park 16802.
Biochemistry. 1990 Dec 18;29(50):11057-67. doi: 10.1021/bi00502a007.
The structural properties of the complex formed by apomyoglobin and protoporphyrin IX (des-iron myoglobin) were studied to probe the influence of iron-to-histidine coordination on the native myoglobin fold and the heme binding site geometry. Standard two-dimensional proton nuclear magnetic resonance spectroscopy methods were applied to identify porphyrin and protein signals. A pronounced spectral resemblance between carbonmonoxymyoglobin and des-iron myoglobin was noticed that could be exploited to assign a number of resonances by nuclear Overhauser spectroscopy. Protoporphyrin IX was determined to bind in the same orientation as the heme. Most residues in contact with the prosthetic group were found in the holomyoglobin conformation. Several tertiary structure features were also characterized near the protein termini. It was concluded that the protoporphyrin-apomyoglobin interactions are capable of organizing the binding site and the unfolded region of the apoprotein into the native holoprotein structure.
研究了脱辅基肌红蛋白与原卟啉IX(去铁肌红蛋白)形成的复合物的结构性质,以探究铁与组氨酸配位对天然肌红蛋白折叠及血红素结合位点几何结构的影响。应用标准的二维质子核磁共振光谱法来识别卟啉和蛋白质信号。注意到一氧化碳肌红蛋白和去铁肌红蛋白之间存在明显的光谱相似性,可利用这种相似性通过核Overhauser光谱法归属一些共振峰。确定原卟啉IX以与血红素相同的方向结合。发现与辅基接触的大多数残基处于全肌红蛋白构象。在蛋白质末端附近还表征了几个三级结构特征。得出的结论是,原卟啉 - 脱辅基肌红蛋白相互作用能够将载脂蛋白的结合位点和未折叠区域组织成天然全蛋白结构。