Lin Yu-Ru, Koga Nobuyasu, Vorobiev Sergey M, Baker David
Department of Biochemistry, University of Washington, and Howard Hughes Medical Institute, Seattle, Washington 98195.
Research Center of Integrative Molecular Systems, Institute for Molecular Science, National Institute of Natural Sciences (NINS), Okazaki 444-8585, Japan.
Protein Sci. 2017 Nov;26(11):2187-2194. doi: 10.1002/pro.3270.
We have previously shown that monomeric globular αβ-proteins can be designed de novo with considerable control over topology, size, and shape. In this paper, we investigate the design of cyclic homo-oligomers from these starting points. We experimented with both keeping the original monomer backbones fixed during the cyclic docking and design process, and allowing the backbone of the monomer to conform to that of adjacent subunits in the homo-oligomer. The latter flexible backbone protocol generated designs with shape complementarity approaching that of native homo-oligomers, but experimental characterization showed that the fixed backbone designs were more stable and less aggregation prone. Designed C2 oligomers with β-strand backbone interactions were structurally confirmed through x-ray crystallography and small-angle X-ray scattering (SAXS). In contrast, C3-C5 designed homo-oligomers with primarily nonpolar residues at interfaces all formed a range of oligomeric states. Taken together, our results suggest that for homo-oligomers formed from globular building blocks, improved structural specificity will be better achieved using monomers with increased shape complementarity and with more polar interfaces.
我们之前已经表明,可以从头设计单体球状αβ蛋白,对其拓扑结构、大小和形状进行相当程度的控制。在本文中,我们从这些起点出发研究环状同聚体的设计。我们进行了实验,一种是在环状对接和设计过程中保持原始单体主链固定,另一种是允许单体主链与同聚体中相邻亚基的主链相适配。后一种灵活主链方案产生的设计,其形状互补性接近天然同聚体,但实验表征表明,固定主链设计更稳定,不易聚集。具有β链主链相互作用的设计C2寡聚体通过X射线晶体学和小角X射线散射(SAXS)得到了结构确认。相比之下,在界面处主要具有非极性残基的C3 - C5设计同聚体均形成了一系列寡聚状态。综合来看,我们的结果表明,对于由球状构建块形成的同聚体,使用具有更高形状互补性和更多极性界面的单体将能更好地实现结构特异性的提升。