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金属离子与脱辅基、全铁及重组马脾铁蛋白的结合。

Metal ion binding to apo, holo, and reconstituted horse spleen ferritin.

作者信息

Pead S, Durrant E, Webb B, Larsen C, Heaton D, Johnson J, Watt G D

机构信息

Department of Chemistry Undergraduate Research Program, Brigham Young University, Provo, UT 84602, USA.

出版信息

J Inorg Biochem. 1995 Jul;59(1):15-27. doi: 10.1016/0162-0134(94)00050-k.

Abstract

The binding of Cd2+, Zn2+, Cu2+, Ni2+, Co2+, Mn2+, and Mg2+ to apo, holo, reconstituted horse spleen ferritin (HoSF), and native holo HoSF with phosphate removed was measured by gel-exclusion chromatography. Three classes of strong binding interactions (Kd < 10(-7) M) with apo HoSF at pH 7.5 were found for the various M2+ studied: high stoichiometric binding (30-54 M2+/HoSF) for Cd2+, Zn2+, Cu2+, with two protons released per metal bound; intermediate binding (16 M2+/HoSF) for Ni2+ and Co2+, with one proton released per metal bound; and low levels of binding (2-12 M2+/HoSF) for Mn2+, Mg2+, and Fe2+, with < 0.5 protons released per metal bound. M2+ binding to apo HoSF was nearly abolished at pH 5.5, except for Fe2+ and Cu2+, which remained unaffected by pH alteration. Holo HoSF bound much higher levels of M2+, a result directly attributable to the presence of phosphate binding sites. This conclusion was confirmed by decreased binding of M2+ to HoSF reconstituted in the absence of phosphate and by native holo HoSF with phosphate chemically removed. The binding of Cd2+ to apo HoSF was 54 per HoSF, but in the presence of developing core, the amount bound decreased to about 30 Cd2+/HoSF. This result indicated that Cd2+ and developing core were competing for the same sites on the HoSF interior, suggesting that 24 of the Cd2+ were bound to the inside surface. No other M2+ studied bound to the interior of HoSF by this criterion. Several of the M2+ appeared to bind strongly to the phosphate-free mineral core surface in reconstituted HoSF.

摘要

通过凝胶排阻色谱法测定了镉离子(Cd2+)、锌离子(Zn2+)、铜离子(Cu2+)、镍离子(Ni2+)、钴离子(Co2+)、锰离子(Mn2+)和镁离子(Mg2+)与脱辅基、全铁、重构马脾铁蛋白(HoSF)以及去除了磷酸盐的天然全铁HoSF的结合情况。在pH 7.5条件下,对于所研究的各种M2+,发现它们与脱辅基HoSF存在三类强结合相互作用(解离常数Kd < 10(-7) M):对于Cd2+、Zn2+、Cu2+,具有高化学计量结合(30 - 54个M2+/HoSF),每个结合的金属释放两个质子;对于Ni2+和Co2+,具有中等结合(16个M2+/HoSF),每个结合的金属释放一个质子;对于Mn2+、Mg2+和Fe2+,具有低水平结合(2 - 12个M2+/HoSF),每个结合的金属释放少于0.5个质子。在pH 5.5时,M2+与脱辅基HoSF的结合几乎被消除,但Fe2+和Cu2+不受pH变化的影响。全铁HoSF结合的M2+水平要高得多,这一结果直接归因于磷酸盐结合位点的存在。在无磷酸盐条件下重构的HoSF以及化学去除了磷酸盐的天然全铁HoSF对M2+的结合减少,证实了这一结论。Cd2+与脱辅基HoSF的结合量为每个HoSF 54个,但在有正在形成的核心时,结合量降至约30个Cd2+/HoSF。这一结果表明Cd2+和正在形成的核心在HoSF内部争夺相同位点,表明24个Cd2+结合在内表面。根据这一标准,所研究的其他M2+均未结合到HoSF内部。在重构的HoSF中,有几种M2+似乎与无磷酸盐的矿物核心表面有强烈结合。

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