首页> 美国卫生研究院文献>Biochemical Journal >Spectroscopic identification of the haem axial ligands of haemoferritin and location of possible haem-binding sites in ferritin by molecular modelling.
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Spectroscopic identification of the haem axial ligands of haemoferritin and location of possible haem-binding sites in ferritin by molecular modelling.

机译:通过分子建模光谱鉴定血铁蛋白的血红素轴向配体和铁蛋白中可能的血红素结合位点的位置。

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摘要

Horse spleen ferritin will bind up to 16 protoporphyrin IX haem groups per 24 subunits in vitro [Kadir & Moore (1990) FEBS Lett. 276, 81-84] at a site that causes the haem to be low spin for both ferric and ferrous states. E.p.r. spectra at 10 K of the oxidized form of the resulting haemoferritin gives g values of 2.93, 2.26 and 1.55, characteristic of low-spin haem. The near-i.r. magnetic circular dichroism spectrum shows a porphyrin-to-ferric charge-transfer band at 1590 nm. The spectroscopic parameters indicate that the haem group is probably bound by two histidine ligands. Molecular modelling studies reveal one type of potential haem-binding site in horse L-chain ferritin with bis-histidine co-ordination. This is an intersubunit site which lies in a pocket within the ferritin protein shell in the region of the 3-fold channel. The ligands are His-114 and His-124 in horse L-chain. A second possible set of sites in human H-chain ferritin involves His-60 residues in the pockets between pairs of subunits. These are considered less likely sites of haem occupancy. There are three of the intersubunit sites in horse L-chain ferritin at each of the eight 3-fold channels. We propose that conformational crowding between haem-binding sites at a given channel prevents more than two haems per channel being bound.
机译:马脾铁蛋白在体外每24个亚基最多可结合16个原卟啉IX血红素基团[Kadir&Moore(1990)FEBS Lett。 276,81-84]导致铁和亚铁态血红素偏低的位置。 E.p.r.所得血铁蛋白的氧化形式在10 K处的光谱给出的g值为2.93、2.26和1.55,这是低旋转血红素的特征。近红外圆二色性光谱显示在1590 nm处有卟啉至铁的电荷转移带。光谱参数表明血红素基团可能被两个组氨酸配体结合。分子建模研究揭示了在马L链铁蛋白中通过双组氨酸协同作用的一种潜在的血红素结合位点。这是一个亚基间位点,位于3倍通道区域的铁蛋白蛋白壳内的口袋中。配体是马L链中的His-114和His-124。人H链铁蛋白中的第二个可能位点集涉及成对的亚基之间口袋中的His-60残基。这些被认为是不太可能发生血红素占据的地方。在8个3倍通道的每个通道中,马L链铁蛋白中有3个亚基位点。我们建议在给定通道的血红素结合位点之间构象拥挤可防止每个通道结合两个以上的血红素。

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