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Magnetic circular dichroism spectroscopy as a probe of axial heme ligand replacement in semisynthetic mutants of cytochrome c

机译:磁性圆二色光谱作为细胞色素c半合成突变体中轴向血红素配体置换的探针

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>Horse heart cytochrome c with either histidine or cysteine replacing the endogenous axial methionine ligand at position 80 has been characterized with magnetic circular dichroism (MCD) spectroscopy in the UV-visible region. Comparison of the MCD spectra of the mutant proteins in the ferric state to those of authentic bis-imidazole- and imidazole/thiolate-ligated ferric heme proteins clearly shows that the histidine-imidazole and cysteine-thiolate groups of the replacement amino acids at position 80 are coordinated to the heme iron in the mutant proteins. This study demonstrates the power of MCD spectroscopy in identifying axial ligands in mutant heme proteins. Accurate axial ligand assignment is essential for proper interpretation of the altered properties of such novel proteins.
机译:用心脏或血液中的半胱氨酸替代80位位置的内源性轴向蛋氨酸配体的>马心脏细胞色素 c 已通过紫外可见区域的磁性圆二色性(MCD)光谱进行了表征。三价铁突变蛋白与真正的双咪唑和咪唑/硫醇盐连接的铁血红素蛋白的MCD光谱比较清楚地表明,第80位氨基酸的组氨酸-咪唑和半胱氨酸-硫醇盐基团与突变蛋白中的血红素铁配位。这项研究证明了MCD光谱技术在识别血红素突变蛋白中的轴向配体方面的能力。正确的轴向配体分配对于正确解释此类新型蛋白质的改变性质至关重要。

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