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Parameter optimized surfaces (POPS): analysis of key interactions and conformational changes in the ribosome

机译:参数优化表面(POPS):核糖体中关键相互作用和构象变化的分析

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摘要

We present a new method for the calculation of solvent accessible surface areas at the atomic and residue levels, which we call parameter optimized surfaces (POPS-A and POPS-R ). Atomic and residue areas (the latter simulated with a single sphere centered at the Cαs atom for amino acids and at the P atom for nucleotides) have been optimized versus accurate all-atoms methods. We concentrated on an analytical formula for the approximation of solvent accessibilities. The formula is simple, easily derivable and fast to compute, therefore it is practical for use in molecular dynamics simulations as an approximation to the first solvation shell. The residue based approach POPS-R has been derived as a useful tool for the analysis of large macromolecular assemblies like the ribosome, and is especially suited for use in refinement of low resolution structures. The structures of the 70S, 50S and 30S ribosomes have been analyzed in detail and most of the interactions within the subunits and at their interfaces were clearly identified. Some interesting differences between 30S alone and within the 70S have been highlighted. Owing to the presence of the P-tRNA in the 70S ribosome, localized conformational rearrangements occur within the subunits, exposing Arg and Lys residues to negatively charged binding sites of P-tRNA. POPS-R also allows for estimates of the loss of free energy of solvation upon complex formation, particularly useful in designing new protein–RNA complexes and in suggesting more focused experimental work.
机译:我们提出了一种在原子和残基水平上计算溶剂可及表面积的新方法,我们将其称为参数优化表面(POPS-A和POPS-R)。相对于精确的全原子方法,已经优化了原子和残基区域(后者以氨基酸为C α原子和核苷酸为P原子的单个球模拟)。我们专注于近似溶剂可及性的分析公式。该公式简单,易于推导且计算速度快,因此可作为分子动力学模拟中第一个溶剂化壳的近似值,因此非常实用。基于残基的方法POPS-R已被用作分析大型大分子装配体(如核糖体)的有用工具,并且特别适合用于低分辨率结构的优化。 70S,50S和30S核糖体的结构已被详细分析,并且清楚地识别了亚基内部及其界面的大多数相互作用。突出了单独的30S和70S之间的一些有趣的区别。由于70S核糖体中存在P-tRNA,在亚基内发生局部构象重排,使Arg和Lys残基暴露于P-tRNA的带负电荷的结合位点。 POPS-R还可以估计在复合物形成时溶剂化自由能的损失,在设计新的蛋白质-RNA复合物和建议进行更集中的实验工作中特别有用。

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