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Neutral thiol as a proximal ligand to ferrous heme iron: Implications for heme proteins that lose cysteine thiolate ligation on reduction

机译:中性硫醇作为亚铁血红素铁的近端配体:对在还原时失去半胱氨酸硫醇盐连接的血红素蛋白的影响

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摘要

Cysteine plays a key role as a metal ligand in metalloproteins. In all well-recognized cases, however, it is the anionic cysteinate that coordinates. Several cysteinate-ligated heme proteins are known, but some fail to retain thiolate ligation in the ferrous state, possibly following protonation to form neutral cysteine. Ligation by cysteine thiol in ferrous heme proteins has not been documented. To establish spectroscopic signatures for such systems, we have prepared five-coordinate adducts of the ferrous myoglobin H94G cavity mutant with neutral thiol and thioether sulfur donors as well as six-coordinate derivatives such as with CO and, when possible, with NO and O2. A thiol-ligated oxyferrous complex is reported, to our knowledge for the first time. Further, a bis-thioether ferrous H93G model for bis-methionine ligation, as found in Pseudomonas aeruginosa bacterioferritin heme protein, is described. Magnetic CD spectroscopy has been used due to its established ability in axial ligand identification. The magnetic CD spectra of the H93G complexes have been compared with those of ferrous H175C/D235L cytochrome c peroxidase to show that its proximal ligand is neutral cysteine. We had previously reported this cytochrome c peroxidase mutant to be cysteinate-ligated in the ferric state, but the ferrous ligand was undetermined. The spectral properties of ferrous liver microsomal cytochrome P420 (inactive P450) are also consistent with thiol ligation. This study establishes that neutral cysteine can serve as a ligand in ferrous heme iron proteins, and that ferric cysteinate-ligated heme proteins that fail to retain such ligation on reduction may simply be ligated by neutral cysteine.
机译:半胱氨酸在金属蛋白中作为金属配体发挥关键作用。但是,在所有公认的情况下,都是阴离子半胱氨酸盐进行配位。已知有几种半胱氨酸连接的血红素蛋白,但是有些不能将硫醇盐连接保持在亚铁状态,可能是在质子化形成中性半胱氨酸之后。半胱氨酸在亚铁血红素蛋白中的连接尚未见文献报道。为建立此类系统的光谱特征,我们准备了带有中性硫醇和硫醚硫供体的六价铁配基肌红蛋白H94G空腔突变体,以及与CO以及在可能的情况下与NO和O2形成的六坐标衍生物。据我们所知,首次报道了硫醇连接的氧化亚铁配合物。此外,描述了在铜绿假单胞菌细菌铁蛋白血红素蛋白中发现的用于双甲硫氨酸连接的双硫醚亚铁H93G模型。由于其在轴向配体鉴定中已建立的能力,已经使用了磁性CD光谱。已将H93G配合物的磁性CD光谱与H175C / D235L细胞色素c过氧化亚铁的磁性CD光谱进行比较,表明其近端配体为中性半胱氨酸。我们以前曾报道过这种细胞色素c过氧化物酶突变体在铁状态下是半胱氨酸连接的,但是亚铁配体尚未确定。亚铁肝微粒体细胞色素P420(非活性P450)的光谱特性也与硫醇连接一致。这项研究建立了中性半胱氨酸可以充当亚铁血红素铁蛋白的配体,并且在还原中不能保持这种连接的半胱氨酸铁连接的血红素蛋白可以简单地被中性半胱氨酸连接。

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