Institute of Pharmaceutical Science, King's College London, Franklin-Wilkins Building, 150 Stamford Street, London, UK.
Biometals. 2011 Dec;24(6):1179-87. doi: 10.1007/s10534-011-9476-8. Epub 2011 Jul 17.
The cytoplasmic labile iron pool supplies iron to the mitochondrion for heme and iron sulfur cluster synthesis and to many cytoplasmic enzymes, thereby controlling numerous metabolic reactions. Surprisingly the chemical nature of this pool has never been convincingly characterised. Here we provide evidence for iron(II)glutathione being the dominant component of this pool. We report for the first time the affinity constant for the glutathione-iron(II) interaction and use this value to study the cytoplasmic speciation of iron(II). The formation of this complex is a major determinant of the electrode potential of the cytoplasmic ferrous iron pool, a means of selecting between iron(II) and manganese(II) and it provides a substrate for glutaredoxin/iron clusters at the dimer interface of glutaredoxins involved in the synthesis of Fe-S cluster proteins.
细胞质不稳定铁池为线粒体提供铁用于血红素和铁硫簇合成以及许多细胞质酶,从而控制许多代谢反应。令人惊讶的是,该池的化学性质从未得到令人信服的描述。在这里,我们提供了铁(II)-谷胱甘肽是该池主要成分的证据。我们首次报道了谷胱甘肽-铁(II)相互作用的亲和常数,并利用该值研究了细胞质中铁(II)的形态。该复合物的形成是细胞质亚铁铁池电极电位的主要决定因素,是在铁(II)和锰(II)之间进行选择的一种方式,并且它为涉及 Fe-S 簇蛋白合成的谷氧还蛋白中二聚体界面处的谷氧还蛋白/铁簇提供了底物。