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超流作用能够实现合成生物分子的有序组装。

Supercharging enables organized assembly of synthetic biomolecules.

机构信息

Center for Systems and Synthetic Biology, University of Texas at Austin, Austin, TX, USA.

Institute for Cellular and Molecular Biology, University of Texas at Austin, Austin, TX, USA.

出版信息

Nat Chem. 2019 Mar;11(3):204-212. doi: 10.1038/s41557-018-0196-3. Epub 2019 Jan 14.

Abstract

Symmetrical protein oligomers are ubiquitous in biological systems and perform key structural and regulatory functions. However, there are few methods for constructing such oligomers. Here we have engineered completely synthetic, symmetrical oligomers by combining pairs of oppositely supercharged variants of a normally monomeric model protein through a strategy we term 'supercharged protein assembly' (SuPrA). We show that supercharged variants of green fluorescent protein can assemble into a variety of architectures including a well-defined symmetrical 16-mer structure that we solved using cryo-electron microscopy at 3.47 Å resolution. The 16-mer is composed of two stacked rings of octamers, in which the octamers contain supercharged proteins of alternating charges, and interactions within and between the rings are mediated by a variety of specific electrostatic contacts. The ready assembly of this structure suggests that combining oppositely supercharged pairs of protein variants may provide broad opportunities for generating novel architectures via otherwise unprogrammed interactions.

摘要

对称蛋白寡聚体在生物系统中无处不在,它们具有关键的结构和调节功能。然而,构建此类寡聚体的方法却很少。在这里,我们通过一种称为“超荷蛋白组装”(SuPrA)的策略,通过组合一对相反荷电的通常是单体模型蛋白的变异体,构建了完全合成的对称寡聚体。我们证明,绿色荧光蛋白的超荷变体可以组装成各种结构,包括一个明确的对称 16 聚体结构,我们使用 cryo-电子显微镜在 3.47Å分辨率下解决了这个结构。16 聚体由两个堆叠的八聚体环组成,其中八聚体包含交替电荷的超荷蛋白,环内和环之间的相互作用由各种特定的静电相互作用介导。这种结构的易于组装表明,通过组合相反荷电的蛋白变体,可以为通过其他未编程的相互作用产生新的结构提供广泛的机会。

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