Cheesman M R, Thomson A J, Greenwood C, Moore G R, Kadir F
School of Chemical Sciences, University of East Anglia, Norwich, UK.
Nature. 1990 Aug 23;346(6286):771-3. doi: 10.1038/346771a0.
The iron-containing bacterioferritins contain the protoporphyrin IX haem group. It has been established that Escherichia coli cytochrome b1, cytochrome b557 and bacterioferritin are identical. The optical spectra at room temperature of the haem group show it to be predominantly low-spin in both the ferrous and ferric states. The nature of the axial ligands binding the haem group to the polypeptide has, however, remained unknown. Low-spin, bis-coordinate haem centres in proteins typically have a role in rapid electron transfer as redox changes at the metal ion lead to little structural rearrangement. There are only four amino acids with side-chains that have ligand field strengths sufficient to generate the low-spin state of haem, namely, histidine, lysine, methionine and cysteine. Hence there are, potentially, ten different pairs of these four ligands which could be discovered in electron transfer haemoproteins. To date only three have been established with certainty. They are bis-histidine, as in mammalian cytochrome b5, methionine-histidine, typified by cytochrome c and lysine-histidine, recently recognized by spectroscopic methods in cytochrome f. Here we report the electron paramagnetic resonance and near infrared magnetic circular dichroism spectra of the oxidized state of Ps. aeruginosa bacterioferritin which enable the axial ligands to be identified as the thioether side chains of two methionine residues, a ligation scheme not previously reported for haem in any protein.
含铁的细菌铁蛋白含有原卟啉IX血红素基团。已经确定大肠杆菌细胞色素b1、细胞色素b557和细菌铁蛋白是相同的。血红素基团在室温下的光谱表明,它在亚铁和铁状态下主要是低自旋的。然而,将血红素基团与多肽结合的轴向配体的性质仍然未知。蛋白质中的低自旋、双配位血红素中心通常在快速电子转移中起作用,因为金属离子的氧化还原变化导致很少的结构重排。只有四种带有侧链的氨基酸具有足以产生血红素低自旋状态的配体场强度,即组氨酸、赖氨酸、甲硫氨酸和半胱氨酸。因此,在电子转移血红蛋白中可能会发现这四种配体的十种不同组合。迄今为止,只有三种已被确定。它们是双组氨酸,如在哺乳动物细胞色素b5中;甲硫氨酸-组氨酸,以细胞色素c为代表;赖氨酸-组氨酸,最近在细胞色素f中通过光谱方法识别。在这里,我们报告了铜绿假单胞菌细菌铁蛋白氧化态的电子顺磁共振和近红外磁圆二色光谱,这些光谱能够将轴向配体鉴定为两个甲硫氨酸残基的硫醚侧链,这是一种以前在任何蛋白质中都未报道过的血红素配位方案。