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从鞭毛展示二级肽库中筛选新型镍结合肽。

Selection of novel nickel-binding peptides from flagella displayed secondary peptide library.

作者信息

Dong Jie, Liu Chuan, Zhang Jie, Xin Zhong-Tao, Yang Guang, Gao Bo, Mao Can-Quan, Liu Nong-Le, Wang Fang, Shao Ning-Sheng, Fan Ming, Xue Yan-Ning

机构信息

Department of Biochemistry, Beijing Institute of Basic Medical Sciences, P.O. Box 130(3) Beijing 100850, People's Republic of China.

出版信息

Chem Biol Drug Des. 2006 Aug;68(2):107-12. doi: 10.1111/j.1747-0285.2006.00421.x.

Abstract

Nickel (Ni) performs its biological or toxic functions in nickel-protein coordination form. Novel Ni-binding peptides were isolated from a random dodecapeptide library displayed on the flagella of Escherichia coli against immobilized ions. On the basis of isolated sequences rich in histidine residues, two secondary libraries were constructed respectively. By consequent selection, more Ni-chelating peptides were identified and the consensus motif RHXHR (where X was always H) was deduced. The result suggested that not only histidine, but also arginine, play an important role in Ni-binding. Furthermore, two selected clones (1035 and 2022) were chosen for further identification. They exhibited similar relative binding affinity, which was about nine times that of the original library derived clones and statistically much more significant than the positive control with polyhistidine insert. Free nickel ions could almost completely inhibit the binding of the clones 1035 and 2022 to immobilized nickel, implicating that the peptides were able to chelate nickel ions. These studies reveal that bacterial surface displayed peptide libraries may have promising future potential for the development of metal bioadsorbents. Furthermore, novel Ni-binding peptides may provide lead molecules for Ni-chelation and applications thereof.

摘要

镍(Ni)以镍 - 蛋白质配位形式发挥其生物学或毒性功能。从展示在大肠杆菌鞭毛上的随机十二肽文库中筛选出针对固定化离子的新型镍结合肽。基于富含组氨酸残基的分离序列,分别构建了两个二级文库。通过后续筛选,鉴定出更多的镍螯合肽,并推导得出共有基序RHXHR(其中X始终为H)。结果表明,不仅组氨酸,精氨酸在镍结合中也起着重要作用。此外,选择了两个选定的克隆(1035和2022)进行进一步鉴定。它们表现出相似的相对结合亲和力,约为原始文库衍生克隆的九倍,并且在统计学上比带有多组氨酸插入片段的阳性对照更显著。游离镍离子几乎可以完全抑制克隆1035和2022与固定化镍的结合,这表明这些肽能够螯合镍离子。这些研究表明,细菌表面展示的肽文库在金属生物吸附剂的开发方面可能具有广阔的前景。此外,新型镍结合肽可能为镍螯合及其应用提供先导分子。

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