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生物素-链霉亲和素相互作用如何变得更强:通过晶体学和嵌合四聚体研究。

How the biotin-streptavidin interaction was made even stronger: investigation via crystallography and a chimaeric tetramer.

机构信息

Department of Biochemistry, Oxford University, South Parks Road, Oxford OX1 3QU, UK.

出版信息

Biochem J. 2011 Apr 1;435(1):55-63. doi: 10.1042/BJ20101593.

Abstract

The interaction between SA (streptavidin) and biotin is one of the strongest non-covalent interactions in Nature. SA is a widely used tool and a paradigm for protein-ligand interactions. We previously developed a SA mutant, termed Tr (traptavidin), possessing a 10-fold lower off-rate for biotin, with increased mechanical and thermal stability. In the present study, we determined the crystal structures of apo-Tr and biotin-Tr at 1.5 Å resolution. In apo-SA the loop (L3/4), near biotin's valeryl tail, is typically disordered and open, but closes upon biotin binding. In contrast, L3/4 was shut in both apo-Tr and biotin-Tr. The reduced flexibility of L3/4 and decreased conformational change on biotin binding provide an explanation for Tr's reduced biotin off- and on-rates. L3/4 includes Ser45, which forms a hydrogen bond to biotin consistently in Tr, but erratically in SA. Reduced breakage of the biotin-Ser45 hydrogen bond in Tr is likely to inhibit the initiating event in biotin's dissociation pathway. We generated a Tr with a single biotin-binding site rather than four, which showed a simi-larly low off-rate, demonstrating that Tr's low off-rate was governed by intrasubunit effects. Understanding the structural features of this tenacious interaction may assist the design of even stronger affinity tags and inhibitors.

摘要

SA(链霉亲和素)与生物素的相互作用是自然界中最强的非共价相互作用之一。SA 是一种广泛使用的工具,也是蛋白质-配体相互作用的范例。我们之前开发了一种 SA 突变体,称为 Tr(陷阱链霉亲和素),它对生物素有 10 倍的低离解率,具有更高的机械和热稳定性。在本研究中,我们以 1.5Å 的分辨率确定了 apo-Tr 和 biotin-Tr 的晶体结构。在 apo-SA 中,靠近生物素缬氨酰尾巴的环(L3/4)通常是无序和开放的,但在结合生物素后会关闭。相比之下,L3/4 在 apo-Tr 和 biotin-Tr 中均关闭。L3/4 的灵活性降低和结合生物素时构象变化减少,为 Tr 的降低生物素离解和结合速率提供了解释。L3/4 包括 Ser45,它在 Tr 中始终与生物素形成氢键,但在 SA 中则不稳定。Tr 中生物素-Ser45 氢键的断裂减少可能会抑制生物素解离途径中的起始事件。我们生成了一个具有单个生物素结合位点而不是四个的 Tr,其离解率也很低,这表明 Tr 的低离解率受亚基内效应的控制。了解这种顽强相互作用的结构特征可能有助于设计更强的亲和力标签和抑制剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1052/3062853/599e028c6412/bic950i001.jpg

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