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Proper evaluation of chemical cross-linking-based spatial restraints improves the precision of modeling homo-oligomeric protein complexes

机译:对基于化学交联的空间约束的适当评估改善了均外低聚蛋白复合物建模的精度

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The function of oligomeric proteins is inherently linked to their quaternary structure. In the absence of high-resolution data, low-resolution information in the form of spatial restraints can significantly contribute to the precision and accuracy of structural models obtained using computational approaches. To obtain such restraints, chemical cross-linking coupled with mass spectrometry (XL-MS) is commonly used. However, the use of XL-MS in the modeling of protein complexes comprised of identical subunits (homo-oligomers) is often hindered by the inherent ambiguity of intra- and inter-subunit connection assignment. We present a comprehensive evaluation of (1) different methods for inter-residue distance calculations, and (2) different approaches for the scoring of spatial restraints. Our results show that using Solvent Accessible Surface distances (SASDs) instead of Euclidean distances (EUCs) greatly reduces the assignation ambiguity and delivers better modeling precision. Furthermore, ambiguous connections should be considered as inter-subunit only when the intra-subunit alternative exceeds the distance threshold. Modeling performance can also be improved if symmetry, characteristic for most homo-oligomers, is explicitly defined in the scoring function. Our findings provide guidelines for proper evaluation of chemical cross-linking-based spatial restraints in modeling homo-oligomeric protein complexes, which could facilitate structural characterization of this important group of proteins.
机译:寡聚蛋白的功能本质上与其季结构相连。在没有高分辨率数据的情况下,空间限制形式的低分辨率信息可以显着促进使用计算方法获得的结构模型的精度和准确性。为了获得这种约束,通常使用与质谱(XL-MS)偶联的化学交联。然而,在蛋白质复合物的建模中使用XL-MS的用途通常是通过内部和间间连接分配的固有模糊性阻碍的。我们综合评估(1)用于残留距离计算的不同方法,(2)不同方法的空间限制的评分。我们的结果表明,使用溶剂可接近的表面距离(SASD)而不是欧几里德距离(EUC)大大降低了分配模糊性并提供更好的建模精度。此外,仅当亚基替代替代超过距离阈值时,才应视为亚单元的模糊连接。如果对称性,大多数同源低聚物的特征,也可以改善建模性能,在得分函数中明确定义。我们的调查结果提供了适当评估均外蛋白质复合物模拟化学交联的空间约束的准则,这可以促进这一重要蛋白质的结构表征。

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