首页> 美国卫生研究院文献>Biochemical Journal >Nickel(II) transport in human blood serum. Studies of nickel(II) binding to human albumin and to native-sequence peptide and ternary-complex formation with l-histidine
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Nickel(II) transport in human blood serum. Studies of nickel(II) binding to human albumin and to native-sequence peptide and ternary-complex formation with l-histidine

机译:镍(II)在人血清中的转运。镍(II)与人白蛋白和天然序列肽结合的研究以及与L-组氨酸的三元复合物形成

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摘要

Detailed studies are reported on the Ni(II)-binding site of human serum albumin (HSA) and the results are compared with those obtained from the N-terminal native-sequence peptide, l-aspartyl-l-alanyl-l-histidine N-methylamide (Asp-Ala-His-NHMe). Equilibrium dialysis of HSA and Ni(II) in 0.1m-N-ethylmorpholine/HCl buffer, pH 7.53, demonstrates a specific Ni(II)-binding site on the protein. l-Histidine, the low-molecular-weight Ni(II)-binding constituent of human serum, is shown to have a greater affinity for Ni(II) than does HSA. A small but significant amount of ternary complex HSA–Ni(II)–l-histidine is also present in the equilibrium mixture containing the three components. The log (association constant) values for the binary and ternary Ni(II) complexes are 9.57 and 16.23 respectively. The complex equilibria between Asp-Ala-His-NHMe and Ni(II) have been investigated by analytical potentiometry in aqueous solution (0.15m-NaCl, 25°C). Several species, including MA, MA2, MH−2A, and MH−1A2 [where M and A represent Ni(II) ion and anionic peptide respectively], were detected in the system, MH−2A being the major complex species. Equilibrium studies involving Asp-Ala-His-NHMe, Ni(II) and l-histidine reveal the presence of a ternary complex MH−1AB (where B represents anionic l-histidine) at physiological pH. Detailed studies of visible-absorption spectra of HSA in the presence of Cu(II) and Ni(II) reveal that the two metal ions bind HSA at the same site. The visible-absorption spectrum of Ni(II)–HSA complex shows a highly absorbing peak at 420nm (εmax. = 137; with shoulder at 450–480nm) characteristic of a square planar or square pyramidal co-ordination arrangement about the metal ion. Similar visible-absorption characteristics were observed for the major species MH−2A in the Asp-Ala-His-NHMe–Ni(II) system (λmax. = 420nm; εmax. = 135; with shoulder at 450–480nm). The combination of experimental results from the protein studies and the peptide analyses provides strong evidence for the structure of the Ni(II)-binding site of HSA as one that involves the α-amino nitrogen atom, two deprotonated peptide nitrogen atoms, the imidazole nitrogen atom and the side-chain carboxy group of the aspartic acid residue. On the basis of the results obtained from the individual ternary systems involving protein and peptide, a mechanism for the transportation of Ni(II) in the serum is proposed.
机译:据报道对人血清白蛋白(HSA)的Ni(II)结合位点进行了详细研究,并将结果与​​从N端天然序列肽L-天冬氨酰基-1-丙氨酰基-1-组氨酸N中获得的结果进行了比较。 -甲酰胺(Asp-Ala-His-NHMe)。 HSA和Ni(II)在0.1m-N-乙基吗啉/ HCl缓冲液(pH 7.53)中的平衡渗析证明了蛋白质上特定的Ni(II)结合位点。 1-组氨酸是人血清中低分子量的Ni(II)结合成分,与HSA相比,对Ni(II)具有更大的亲和力。含有三种成分的平衡混合物中也存在少量但大量的三元复合物HSA-Ni(II)-1-组氨酸。二元和三元Ni(II)配合物的对数(缔合常数)分别为9.57和16.23。在水溶液(0.15m-NaCl,25°C)中通过分析电位法研究了Asp-Ala-His-NHMe与Ni(II)之间的复杂平衡。在该系统中检测到几种物质,包括MA,MA2,MH-2A和MH-1A2(其中M和A分别代表Ni(II)离子和阴离子肽),其中MH-2A是主要的复杂物质。涉及Asp-Ala-His-NHMe,Ni(II)和l-组氨酸的平衡研究表明,在生理pH下存在三元配合物MH-1AB(其中B代表阴离子l-组氨酸)。在Cu(II)和Ni(II)存在下HSA的可见吸收光谱的详细研究表明,两种金属离子在同一位置结合HSA。 Ni(II)-HSA络合物的可见吸收光谱在420nm处有一个高吸收峰(εmax。= 137;肩在450-480nm处),具有围绕金属离子的方形平面或方形锥体配位排列的特征。在Asp-Ala-His-NHMe-Ni(II)系统中,主要物种MH-2A观察到相似的可见光吸收特性(λmax。= 420nm;εmax。= 135;肩在450-480nm)。蛋白质研究和肽分析的实验结果相结合,为HSA的Ni(II)结合位点的结构提供了强有力的证据,因为它涉及一个α-氨基氮原子,两个去质子化的肽氮原子,咪唑氮原子和天冬氨酸残基的侧链羧基。基于从涉及蛋白质和肽的三元体系中获得的结果,提出了一种在血清中转运Ni(II)的机制。

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