Department of Chemistry, University of Konstanz, Konstanz, Germany.
Department of Biology, University of Konstanz, Konstanz, Germany.
PLoS Comput Biol. 2018 Nov 16;14(11):e1006589. doi: 10.1371/journal.pcbi.1006589. eCollection 2018 Nov.
Covalent modification of proteins by ubiquitin or ubiquitin chains is one of the most prevalent post-translational modifications in eukaryotes. Different types of ubiquitin chains are assumed to selectively signal respectively modified proteins for different fates. In support of this hypothesis, structural studies have shown that the eight possible ubiquitin dimers adopt different conformations. However, at least in some cases, these structures cannot sufficiently explain the molecular basis of the selective signaling mechanisms. This indicates that the available structures represent only a few distinct conformations within the entire conformational space adopted by a ubiquitin dimer. Here, molecular simulations on different levels of resolution can complement the structural information. We have combined exhaustive coarse grained and atomistic simulations of all eight possible ubiquitin dimers with a suitable dimensionality reduction technique and a new method to characterize protein-protein interfaces and the conformational landscape of protein conjugates. We found that ubiquitin dimers exhibit characteristic linkage type-dependent properties in solution, such as interface stability and the character of contacts between the subunits, which can be directly correlated with experimentally observed linkage-specific properties.
泛素或泛素链对蛋白质的共价修饰是真核生物中最普遍的翻译后修饰之一。不同类型的泛素链被认为分别选择性地为不同命运的修饰蛋白发出信号。为了支持这一假说,结构研究表明,八种可能的泛素二聚体采用不同的构象。然而,至少在某些情况下,这些结构不能充分解释选择性信号机制的分子基础。这表明,可用的结构仅代表在泛素二聚体采用的整个构象空间中存在的几个不同构象。在这里,不同分辨率水平的分子模拟可以补充结构信息。我们已经将所有八种可能的泛素二聚体的详尽粗粒化和原子模拟与合适的维度降低技术以及一种新的方法相结合,以描述蛋白质-蛋白质界面和蛋白质缀合物的构象景观。我们发现,泛素二聚体在溶液中表现出特征性的连接类型依赖性性质,例如界面稳定性和亚基之间的接触性质,这些性质可以直接与实验观察到的连接特异性性质相关联。