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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >NMR-validated structural model for oxidized Rhodopseudomonas palustris cytochrome c_(556)
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NMR-validated structural model for oxidized Rhodopseudomonas palustris cytochrome c_(556)

机译:氧化验证的假单胞假单胞菌细胞色素c_(556)的NMR验证结构模型

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The structure of oxidized Rhodopseudomonas palustris cytochrome c_(556) has been modeled after that of high-spin cytochrome c from the same bacterium, the latter being the protein with the greatest sequence identity (35%) among all sequenced proteins in the genomes. The two proteins differ in the number of ligands to iron and in spin state, the former being six-coordinate low-spin and the latter five-coordinate high-spin. In order to validate this modeled structure, several structural restraints were obtained by performing a restricted set of NMR experiments, without performing a complete assignment of the protein signals. The aim was to exploit the special restraints arising from the paramagnetism of the metal ion. A total of 43 residual-dipolar-coupling and 74 pseudocontact-shift restraints, which together sampled all regions of the protein, were used in conjunction with over 40 routinely obtained NOE distance restraints. A calculation procedure was undertaken combining the program MODELLER and the solution structure determination program PARAMAGNETIC DYANA, which includes paramagnetism-based restraints. The directions and magnitude of the magnetic susceptibility anisotropy tensor were also calculated. The approach readily provides useful results, especially for paramagnetic metalloproteins of moderate to large dimensions.
机译:氧化的大红假单胞菌细胞色素c_(556)的结构是根据同一细菌的高旋转细胞色素c的结构建模的,后者是基因组中所有测序蛋白质中具有最高序列同一性(35%)的蛋白质。两种蛋白质在铁配体和自旋状态的配体数量上有所不同,前者是六坐标的低旋转,而后者是五坐标的高旋转。为了验证这种建模的结构,通过执行一组受限的NMR实验而不执行蛋白质信号的完全分配,获得了一些结构限制。目的是利用由金属离子的顺磁性引起的特殊限制。总共对蛋白质的所有区域进行了采样,总共使用了43个残留的偶极耦合约束和74个伪接触移位约束,并结合了40多个常规获得的NOE距离约束。结合了程序MODELLER和溶液结构确定程序PARAMAGNETIC DYANA,进行了计算程序,该程序包括基于顺磁性的约束。还计算了磁化率各向异性张量的方向和大小。该方法容易提供有用的结果,尤其是对于中等到较大尺寸的顺磁性金属蛋白。

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