首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Copper and zinc binding properties of the N-terminal histidine-rich sequence of Haemophilus ducreyi Cu,Zn superoxide dismutase
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Copper and zinc binding properties of the N-terminal histidine-rich sequence of Haemophilus ducreyi Cu,Zn superoxide dismutase

机译:杜氏嗜血杆菌Cu,Zn超氧化物歧化酶N末端富集组氨酸序列的铜和锌结合特性

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摘要

The Cu,Zn superoxide dismutase (Cu,ZnSOD) isolated from Haemophilus ducreyi possesses a His-rich N-terminal metal binding domain, which has been previously proposed to play a copper(II) chaperoning role. To analyze the metal binding ability and selectivity of the histidine-rich domain we have carried out thermodynamic and solution structural analysis of the copper(II) and zinc(II) complexes of a peptide corresponding to the first 11 amino acids of the enzyme (H2N-HGDHMHNHDTK-OH, L). This peptide has highly versatile metal binding ability and provides one and three high affinity binding sites for zinc(II) and copper(II), respectively. In equimolar solutions the MHL complexes are dominant in the neutral pH-range with protonated lysine epsilon-amino group. As a consequence of its multidentate nature, L binds zinc and copper with extraordinary high affinity (K-D,K-Zn = 1.6 x 10(-9) M and K-D,K-Cu = 5.0 x 10(-12) M at pH 7.4) and appears as the strongest zinc(II) and copper(II) chelator between the His-rich peptides so far investigated. These K-D Values support the already proposed role of the N-terminal His-rich region of H. ducreyi Cu,ZnSOD in copper recruitment under metal starvation, and indicate a similar function in the zinc(II) uptake, too. The kinetics of copper(II) transfer from L to the active site of Cu-free N-deleted H. ducreyi Cu,ZnSOD showed significant pH and copper-to-peptide ratio dependence, indicating specific structural requirements during the metal ion transfer to the active site. Interestingly, the complex CuHL has significant superoxide dismutase like activity, which may suggest multifunctional role of the copper(II)-bound N-terminal His-rich domain of H. ducreyi Cu,ZnSOD. (C) 2008 Elsevier Inc. All rights reserved.
机译:从杜氏嗜血杆菌分离的铜,锌超氧化物歧化酶(Cu,ZnSOD)具有富含His的N端金属结合结构域,先前已提出其起铜(II)伴侣的作用。为了分析富组氨酸结构域的金属结合能力和选择性,我们对对应于酶(H2N)前11个氨基酸的肽的铜(II)和锌(II)配合物进行了热力学和溶液结构分析-HGDHMHNHDTK-OH,L)。该肽具有高度通用的金属结合能力,分别为锌(II)和铜(II)提供一个和三个高亲和力结合位点。在等摩尔溶液中,MHL复合物在带有质子化赖氨酸ε-氨基的中性pH范围内占主导地位。由于其具有多齿性质,因此在pH 7.4时L以极高的亲和力结合锌和铜(KD,K-Zn = 1.6 x 10(-9)M和KD,K-Cu = 5.0 x 10(-12)M ),并且是迄今为止研究的富含His的肽之间最强的锌(II)和铜(II)螯合剂。这些K-D值支持已经提出的H. ducreyi Cu,ZnSOD的N末端富含His的区域在金属饥饿状态下的铜募集中的作用,并且表明锌(II)的吸收也具有相似的功能。铜(II)从L转移至无Cu的N缺失的H. ducreyi Cu,ZnSOD的动力学显示出显着的pH值和铜肽比依赖性,这表明在金属离子转移至C.活动站点。有趣的是,复杂的CuHL具有显着的超氧化物歧化酶样活性,这可能暗示了杜克氏菌Cu,ZnSOD的铜(II)结合N端富含His的域的多功能作用。 (C)2008 Elsevier Inc.保留所有权利。

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