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Assignment of 1H and 13C hyperfine-shifted resonances for tuna ferricytochrome c.

机译:金枪鱼亚铁色素c的1H和13C超精细位移共振的分配。

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摘要

Tuna ferricytochrome c has been used to demonstrate the potential for completely assigning 1H and 13C strongly hyperfine-shifted resonances in metalloprotein paramagnetic centers. This was done by implementation of standard two-dimensional NMR experiments adapted to take advantage of the enhanced relaxation rates of strongly hyperfine-shifted nuclei. The results show that complete proton assignments of the heme and axial ligands can be achieved, and that assignments of several strongly shifted protons from amino acids located close to the heme can also be made. Virtually all proton-bearing heme 13C resonances have been located, and additional 13C resonances from heme vicinity amino acids are also identified. These results represent an improvement over previous proton resonance assignment efforts that were predicated on the knowledge of specific assignments in the diamagnetic protein and relied on magnetization transfer experiments in heterogeneous solutions composed of mixtures of diamagnetic ferrocytochrome c and paramagnetic ferricytochrome c. Even with that more complicated procedure, complete heme proton assignments for ferricytochrome c have never been demonstrated by a single laboratory. The results presented here were achieved using a more generally applicable strategy with a solution of the uniformly oxidized protein, thereby eliminating the requirement of fast electron self-exchange, which is a condition that is frequently not met.
机译:金枪鱼亚铁色素c已被用来证明在金属蛋白顺磁性中心完全分配1H和13C强超精细位移共振的潜力。这是通过实施标准的二维NMR实验来完成的,该实验适合利用强超细位移核的增强弛豫率。结果表明,可以实现血红素和轴向配体的完整质子分配,还可以从靠近血红素的氨基酸进行几个强位移质子的分配。几乎所有带有质子的血红素13C共振都已定位,并且还发现了血红素附近氨基酸的其他13C共振。这些结果表示对先前质子共振分配工作的改进,该工作基于抗磁性蛋白质中的特定分配的知识,并依赖于由抗磁性铁细胞色素c和顺磁性铁细胞色素c的混合物组成的异质溶液中的磁化传递实验。即使采用了更为复杂的程序,也从未在单个实验室中证明过完整的铁血色素c血红素质子分配。此处介绍的结果是通过使用更普遍适用的策略和均匀氧化的蛋白质溶液实现的,从而消除了通常无法满足的快速电子自交换的要求。

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