INSERM, UMR_S 1134, DSIMB, Univ Paris, INTS, Laboratoire d'Excellence GR-Ex, 75015 Paris, France.
Biomolecules. 2020 Jul 20;10(7):1080. doi: 10.3390/biom10071080.
Intrinsically-disordered protein (IDP) characterization was an amazing change of paradigm in our classical sequence-structure-function theory. Moreover, IDPs are over-represented in major disease pathways and are now often targeted using small molecules for therapeutic purposes. This has had created a complex continuum from order-that encompasses rigid and flexible regions-to disorder regions; the latter being not accessible through classical crystallographic methodologies. In X-ray structures, the notion of order is dictated by access to resolved atom positions, providing rigidity and flexibility information with low and high experimental B-factors, while disorder is associated with the missing (non-resolved) residues. Nonetheless, some rigid regions can be found in disorder regions. Using ensembles of IDPs, their local conformations were analyzed in the light of a structural alphabet. An entropy index derived from this structural alphabet allowed us to propose a continuum of states from rigidity to flexibility and finally disorder. In this study, the analysis was extended to comparing these results to disorder predictions, underlying a limited correlation, and so opening new ideas to characterize and predict disorder.
固有无序蛋白质(IDP)的特征描述是我们经典的序列-结构-功能理论的一个惊人的范式转变。此外,IDP 在主要疾病途径中过度表达,现在经常使用小分子针对它们进行治疗。这从有序区域(包括刚性和柔性区域)到无序区域创建了一个复杂的连续体;后者无法通过经典的晶体学方法获得。在 X 射线结构中,有序的概念是由可访问的解析原子位置决定的,提供了刚性和柔性信息,其低和高实验 B 因子,而无序则与缺失(未解析)的残基有关。尽管如此,一些刚性区域也可以在无序区域中找到。使用 IDP 集合,根据结构字母表分析它们的局部构象。从这个结构字母表中得出的熵指数允许我们提出一个从刚性到柔性,最终到无序的状态连续体。在这项研究中,分析扩展到将这些结果与无序预测进行比较,发现相关性有限,因此为特征描述和无序预测开辟了新的思路。