Exchange, promiscuity, and orthogonality in de novo designed coiled-coil peptide assemblies

Kathleen Wilson Kurgan, Freddie James Oliver Martin, William Michael Dawson, Thomas Brunnock, Andrew J Orr-Ewing, Dek N Woolfson
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Abstract

De novo protein design is delivering new peptide and protein structures at a rapid pace. Many of these synthetic polypeptides form well-defined and hyperthermal-stable structures. Generally, however, less is known about the dynamic properties of the de novo designed structures. Here, we explore one aspect of dynamics in a series of de novo coiled-coil peptide assemblies: namely, peptide exchange within and between different oligomers from dimers through to heptamers. First, we develop a fluorescence-based reporter assay for peptide exchange that is straightforward to implement, and, thus, would be useful to others examining similar systems. We apply this assay to explore both homotypic exchange within single species, and heterotypic exchange between coiled coils of different coiled-coil oligomer states. For the former, we provide detailed study for the dimeric coiled coil CC-Di finding a half-life for exchange of 4.2 plus or minus 0.3 minutes when the concentration of CC-Di is 200 micro molar. Interestingly, more broadly when assessing exchange across all of the oligomeric states, we find that some of the designs are faithful and only undergo homotypic strand exchange, whereas others are promiscuous and exchange to form unexpected hetero-oligomers. Finally, we develop two design strategies to improve the orthogonality of the different oligomers: (i) using alternate positioning of salt bridge interactions; and (ii) incorporating of non-canonical repeats into the designed sequences. In so doing, we reconcile the promiscuity and deliver a set of faithful homo-oligomeric de novo coiled-coil peptides. Our findings have implications for the application of these and other coiled coils as modules in chemical and synthetic biology.
全新设计的盘绕肽组装中的交换、杂交和正交性
从头开始的蛋白质设计正在快速提供新的多肽和蛋白质结构。其中许多合成多肽形成了定义明确的高热稳定性结构。然而,一般来说,人们对从头设计结构的动态特性知之甚少。在这里,我们探讨了一系列全新盘绕肽组装的动态特性之一:即从二聚体到七聚体的不同寡聚体内部和之间的肽交换。首先,我们开发了一种基于荧光的肽交换报告检测方法,该方法简单易行,因此对研究类似系统的其他人员很有帮助。我们利用这种检测方法探索了单一物种内部的同型交换以及不同盘绕线圈寡聚体状态的盘绕线圈之间的异型交换。对于前者,我们对二聚体盘卷 CC-Di 进行了详细研究,发现当 CC-Di 的浓度为 200 微摩尔时,交换半衰期为 4.2 正负 0.3 分钟。有趣的是,在评估所有低聚物状态下的交换时,我们发现一些设计是忠实的,只进行同型链交换,而另一些设计则是杂乱的,会交换形成意想不到的异型低聚物。最后,我们开发了两种设计策略来提高不同寡聚体的正交性:(i) 使用盐桥相互作用的交替定位;(ii) 在设计序列中加入非正交重复序列。这样,我们就调和了杂合性,并提供了一组忠实的同源寡聚体从头盘绕肽。我们的研究结果对将这些和其他盘卷肽作为模块应用于化学和合成生物学具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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