Dygut Jacek, Kalinowska Barbara, Banach Mateusz, Piwowar Monika, Konieczny Leszek, Roterman Irena
Department of Rehabilitation, Hospital in Przemyśl, Monte Cassino 18, 37-700 Przemyśl, Poland.
Faculty of Physics, Astronomy and Applied Computer Science, Jagiellonian University, Łojasiewicza 11, 30-348 Krakow, Poland.
Int J Mol Sci. 2016 Oct 18;17(10):1741. doi: 10.3390/ijms17101741.
The presented analysis concerns the inter-domain and inter-protein interface in protein complexes. We propose extending the traditional understanding of the protein domain as a function of local compactness with an additional criterion which refers to the presence of a well-defined hydrophobic core. Interface areas in selected homodimers vary with respect to their contribution to share as well as individual (domain-specific) hydrophobic cores. The basic definition of a protein domain, i.e., a structural unit characterized by tighter packing than its immediate environment, is extended in order to acknowledge the role of a structured hydrophobic core, which includes the interface area. The hydrophobic properties of interfaces vary depending on the status of interacting domains-In this context we can distinguish: (1) Shared hydrophobic cores (spanning the whole dimer); (2) Individual hydrophobic cores present in each monomer irrespective of whether the dimer contains a shared core. Analysis of interfaces in dystrophin and utrophin indicates the presence of an additional quasi-domain with a prominent hydrophobic core, consisting of fragments contributed by both monomers. In addition, we have also attempted to determine the relationship between the type of interface (as categorized above) and the biological function of each complex. This analysis is entirely based on the fuzzy oil drop model.
所呈现的分析涉及蛋白质复合物中的结构域间和蛋白质间界面。我们建议扩展对蛋白质结构域的传统理解,即从局部紧密性的角度出发,并增加一个额外的标准,该标准涉及明确的疏水核心的存在。所选同二聚体中的界面区域在其对共享以及单个(结构域特异性)疏水核心的贡献方面存在差异。蛋白质结构域的基本定义,即一个比其紧邻环境具有更紧密堆积特征的结构单元,被扩展以承认结构化疏水核心(包括界面区域)的作用。界面的疏水性质根据相互作用结构域的状态而变化——在这种情况下,我们可以区分:(1)共享疏水核心(跨越整个二聚体);(2)每个单体中存在的单个疏水核心,无论二聚体是否包含共享核心。对肌营养不良蛋白和抗肌萎缩蛋白中界面的分析表明存在一个额外的准结构域,其具有突出的疏水核心,由两个单体贡献的片段组成。此外,我们还试图确定上述分类的界面类型与每个复合物的生物学功能之间的关系。该分析完全基于模糊油滴模型。