Institute of Molecular Biosciences, University of Graz, Graz, Austria.
Medical University of Graz, Graz, Austria.
Nat Commun. 2024 Sep 18;15(1):8152. doi: 10.1038/s41467-024-52138-3.
Symmetry in nature often emerges from self-assembly processes and serves a wide range of functions. Cell surface layers (S-layers) form symmetrical lattices on many bacterial and archaeal cells, playing essential roles such as facilitating cell adhesion, evading the immune system, and protecting against environmental stress. However, the experimental structural characterization of these S-layers is challenging due to their self-assembly properties and high sequence variability. In this study, we introduce the SymProFold pipeline, which utilizes the high accuracy of AlphaFold-Multimer predictions to derive symmetrical assemblies from protein sequences, specifically focusing on two-dimensional S-layer arrays and spherical viral capsids. The pipeline tests all known symmetry operations observed in these systems (p1, p2, p3, p4, and p6) and identifies the most likely symmetry for the assembly. The predicted models were validated using available experimental data at the cellular level, and additional crystal structures were obtained to confirm the symmetry and interfaces of several SymProFold assemblies. Overall, the SymProFold pipeline enables the determination of symmetric protein assemblies linked to critical functions, thereby opening possibilities for exploring functionalities and designing targeted applications in diverse fields such as nanotechnology, biotechnology, medicine, and materials and environmental sciences.
自然界中的对称性常常源于自组装过程,并具有广泛的功能。细胞表面层 (S-层) 在许多细菌和古菌细胞上形成对称晶格,发挥着重要作用,例如促进细胞黏附、逃避免疫系统和抵御环境压力。然而,由于其自组装特性和高序列变异性,对这些 S-层进行实验结构表征具有挑战性。在这项研究中,我们引入了 SymProFold 管道,该管道利用 AlphaFold-Multimer 预测的高精度从蛋白质序列中推导出对称组装,特别关注二维 S-层阵列和球形病毒衣壳。该管道测试了这些系统中观察到的所有已知对称操作(p1、p2、p3、p4 和 p6),并确定了组装的最可能对称。使用细胞水平上可用的实验数据对预测模型进行了验证,并获得了额外的晶体结构来确认几个 SymProFold 组装的对称性和界面。总体而言,SymProFold 管道能够确定与关键功能相关的对称蛋白质组装,从而为探索功能和设计纳米技术、生物技术、医学以及材料和环境科学等不同领域的靶向应用提供了可能性。