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具有修饰金属结合β-转角的拟蛋白质锌指结构域

Proteomimetic Zinc Finger Domains with Modified Metal-binding β-Turns.

作者信息

Rao Shilpa R, Horne W Seth

机构信息

Department of Chemistry, University of Pittsburgh, 219 Parkman Avenue, Pittsburgh, PA 15260, USA.

出版信息

Pept Sci (Hoboken). 2020 Sep;112(5). doi: 10.1002/pep2.24177. Epub 2020 Jun 7.

Abstract

The mimicry of protein tertiary folds by chains artificial in backbone chemical composition leads to proteomimetic analogues with potential utility as bioactive agents and as tools to shed light on biomacromolecule behavior. Notable successes toward such molecules have been achieved; however, as protein structural diversity is vast, design principles must be continually honed as they are applied to new prototype folding patterns. One specific structure where a gap remains in understanding how to effectively generate modified backbone analogues is the metal-binding β-turn found in zinc finger domains. Literature precedent suggests several factors that may act in concert, including the artificial moiety used to modify the turn, the sequence in which it is applied, and modifications present elsewhere in the domain. Here, we report efforts to gain insights into these issues and leverage these insights to construct a zinc finger mimetic with backbone modifications throughout its constituent secondary structures. We first conduct a systematic comparison of four turn mimetics in a common host sequence, quantifying relative efficacy for use in a metal-binding context. We go on to construct a proteomimetic zinc finger domain in which the helix, strands, and turn are simultaneously modified, resulting in a variant with 23% artificial residues, a tertiary fold indistinguishable from the prototype, and a folded stability comparable to the natural backbone on which the variant is based. Collectively, the results reported provide new insights into the effects of backbone modification on structure and stability of metal-binding domains and help inform the design of metalloprotein mimetics.

摘要

由主链化学成分人工合成的链对蛋白质三级结构的模拟,可产生具有蛋白质模拟类似物,它们有可能作为生物活性剂以及用于阐明生物大分子行为的工具。在这类分子的研究上已取得显著成功;然而,由于蛋白质结构的多样性极为广泛,在将设计原则应用于新的原型折叠模式时,必须不断完善这些原则。在理解如何有效生成修饰主链类似物方面仍存在空白的一个特定结构,是锌指结构域中发现的金属结合β转角。文献先例表明有几个因素可能协同作用,包括用于修饰转角的人工部分、应用的顺序以及该结构域其他位置存在的修饰。在此,我们报告了为深入了解这些问题并利用这些见解构建一个在其组成二级结构中均有主链修饰的锌指模拟物所做的努力。我们首先在一个共同的宿主序列中对四种转角模拟物进行系统比较,量化它们在金属结合环境中的相对功效。接着,我们构建了一个蛋白质模拟锌指结构域,其中螺旋、链段和转角同时被修饰,得到了一个具有23%人工残基的变体,其三级折叠与原型难以区分,且折叠稳定性与该变体所基于的天然主链相当。总体而言,所报道的结果为深入了解主链修饰对金属结合结构域的结构和稳定性的影响提供了新的见解,并有助于为金属蛋白模拟物的设计提供参考。

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