Biologie Intégrée du Globule Rouge UMR_S1134, Inserm, Univ. Paris, Univ. de la Réunion, Univ. des Antilles, F-75739 Paris, France; Laboratoire d'Excellence GR-Ex, F-75739 Paris, France; Faculté des Sciences et Technologies, Saint Denis Messag, F-97715 La Réunion, France; Institut National de la Transfusion Sanguine (INTS), F-75739 Paris, France.
Biologie Intégrée du Globule Rouge UMR_S1134, Inserm, Univ. Paris, Univ. de la Réunion, Univ. des Antilles, F-75739 Paris, France; Laboratoire d'Excellence GR-Ex, F-75739 Paris, France; Institut National de la Transfusion Sanguine (INTS), F-75739 Paris, France.
J Struct Biol. 2020 Apr 1;210(1):107464. doi: 10.1016/j.jsb.2020.107464. Epub 2020 Jan 21.
Sequence - structure - function paradigm has been revolutionized by the discovery of disordered regions and disordered proteins more than two decades ago. While the definition of rigidity is simple with X-ray structures, the notion of flexibility is linked to high experimental B-factors. The definition of disordered regions is more complex as in these same X-ray structures; it is associated to the position of missing residues. Thus a continuum so seems to exist between rigidity, flexibility and disorder. However, it had not been precisely described. In this study, we used an ensemble of disordered proteins (or regions) and, we applied a structural alphabet to analyse their local conformation. This structural alphabet, namely Protein Blocks, had been efficiently used to highlight rigid local domains within flexible regions and so discriminates deformability and mobility concepts. Using an entropy index derived from this structural alphabet, we underlined its interest to measure these local dynamics, and to quantify, for the first time, continuum states from rigidity to flexibility and finally disorder. We also highlight non-disordered regions in the ensemble of disordered proteins in our study.
二十多年前,无序区域和无序蛋白质的发现彻底改变了序列-结构-功能模式。虽然 X 射线结构的刚性定义很简单,但柔性的概念与高实验 B 因子有关。无序区域的定义更为复杂,因为在这些相同的 X 射线结构中,它与缺失残基的位置有关。因此,刚性、柔性和无序之间似乎存在一个连续体。然而,这并没有被精确描述。在这项研究中,我们使用了一组无序蛋白质(或区域),并应用结构字母表来分析它们的局部构象。这种结构字母表,即蛋白质块,已被有效地用于突出柔性区域内的刚性局部结构域,从而区分变形性和移动性概念。使用从这个结构字母表中得出的熵指数,我们强调了它用于测量这些局部动力学的意义,并首次量化了从刚性到柔性再到无序的连续状态。我们还突出了我们研究中的无序蛋白质集合中的非无序区域。