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能量挫折对变构蛋白 S100A12 的配体偶联折叠/二聚化动力学的影响。

Consequences of Energetic Frustration on the Ligand-Coupled Folding/Dimerization Dynamics of Allosteric Protein S100A12.

机构信息

National Laboratory of Solid State Microstructure, Department of Physics, and Collaborative Innovation Center of Advanced Microstructures, Nanjing University , Nanjing 210093, China.

出版信息

J Phys Chem B. 2017 Oct 26;121(42):9799-9806. doi: 10.1021/acs.jpcb.7b06919. Epub 2017 Oct 16.

Abstract

Allosteric proteins are featured by energetic degeneracy of two (or more) functionally relevant conformations, therefore their energy landscapes are often locally frustrated. How such frustration affects the protein folding/binding dynamics is not well understood. Here, by using molecular simulations we study the consequences of local frustration in the dimerization dynamics of allosteric proteins based on a homodimer protein S100A12. Despite of the structural symmetry of the two EF-hand motifs in the three-dimensional structures, the S100A12 homodimer shows allosteric behaviors and local frustration only in half of its structural elements, i.e., the C-terminal EF-hand. We showed that such spatially asymmetric location of frustration leads to asymmetric dimerization pathways, in which the dimerization is dominantly initiated by the interchain binding of the minimally frustrated N-terminal EF-hands, achieving optimal balance between the requirements of rapid conformational switching and interchain assembling to the energy landscapes. We also showed that the local frustration, as represented by the double-basin topography of the energy landscape, gives rise to multiple cross-linked dimerization pathways, in which the dimerization is coupled with the allosteric motions of the C-terminal EF-hands. Binding of metal ions tends to reshape the energy landscape and modulate the dimerization pathways. In addition, by employing the frustratometer method, we showed that the highly frustrated residue-pairs in the C-terminal EF-hand are partially unfolded during the conformational transitions of the native homodimer, leading to lowing of free energy barrier. Our results revealed tight interplay between the local frustration of the energy landscape and the dimerization dynamics for allosteric proteins.

摘要

变构蛋白的特点是两种(或更多)功能相关构象的能量简并,因此其能量景观通常在局部受到挫折。这种挫折如何影响蛋白质折叠/结合动力学尚不清楚。在这里,我们通过使用分子模拟研究了局部挫折对基于同源二聚体蛋白 S100A12 的变构蛋白二聚化动力学的影响。尽管在三维结构中两个 EF 手模体具有结构对称性,但 S100A12 同源二聚体仅在其结构元素的一半(即 C 端 EF 手)中表现出变构行为和局部挫折。我们表明,这种空间不对称的挫折位置导致不对称的二聚化途径,其中二聚化主要由最小受挫的 N 端 EF 手之间的链间结合引发,在快速构象转换和链间组装到能量景观的要求之间达到最佳平衡。我们还表明,能量景观的双谷地形代表的局部挫折导致了多种交联二聚化途径,其中二聚化与 C 端 EF 手的变构运动耦合。金属离子的结合往往会重塑能量景观并调节二聚化途径。此外,通过使用 frustratometer 方法,我们表明,在天然同源二聚体的构象转变过程中,C 端 EF 手的高受挫残基对部分展开,导致自由能势垒降低。我们的结果揭示了变构蛋白的能量景观局部挫折与二聚化动力学之间的紧密相互作用。

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