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M-ORBIS: Mapping of mOleculaR Binding sItes and Surfaces

机译:M-ORBIS:分子结合位点和表面的映射

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摘要

M-ORBIS is a Molecular Cartography approach that performs integrative high-throughput analysis of structural data to localize all types of binding sites and associated partners by homology and to characterize their properties and behaviors in a systemic way. The robustness of our binding site inferences was compared to four curated datasets corresponding to protein heterodimers and homodimers and protein–DNA/RNA assemblies. The Molecular Cartographies of structurally well-detailed proteins shows that 44% of their surfaces interact with non-solvent partners. Residue contact frequencies with water suggest that ∼86% of their surfaces are transiently solvated, whereas only 15% are specifically solvated. Our analysis also reveals the existence of two major binding site families: specific binding sites which can only bind one type of molecule (protein, DNA, RNA, etc.) and polyvalent binding sites that can bind several distinct types of molecule. Specific homodimer binding sites are for instance nearly twice as hydrophobic than previously described and more closely resemble the protein core, while polyvalent binding sites able to form homo and heterodimers more closely resemble the surfaces involved in crystal packing. Similarly, the regions able to bind DNA and to alternatively form homodimers, are more hydrophobic and less polar than previously described DNA binding sites.
机译:M-ORBIS是一种分子制图方法,它对结构数据进行综合的高通量分析,以通过同源性定位所有类型的结合位点和相关配偶体,并以系统的方式表征其特性和行为。我们将结合位点推论的鲁棒性与对应于蛋白质异二聚体和同二聚体以及蛋白质-DNA / RNA组装体的四个精选数据集进行了比较。结构详细的蛋白质的分子图谱显示,其表面的44%与非溶剂配偶体相互作用。残留物与水的接触频率表明,约有86%的表面被瞬时溶剂化,而只有15%的表面被特殊溶剂化。我们的分析还揭示了存在两个主要的结合位点家族:只能结合一种类型的分子(蛋白质,DNA,RNA等)的特异性结合位点和可以结合几种不同类型的分子的多价结合位点。特定的同二聚体结合位点例如比先前描述的疏水性近两倍,并且更类似于蛋白质核心,而能够形成同型和异二聚体的多价结合位点更类似于晶体包装中涉及的表面。类似地,与先前描述的DNA结合位点相比,能够结合DNA并交替形成同二聚体的区域更疏水且极性更低。

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