Molecular and Statistical Biophysics, Scuola Internazionale Superiore di Studi Avanzati (SISSA), Via Bonomea 265, 34136 Trieste, Italy.
Molecular and Statistical Biophysics, Scuola Internazionale Superiore di Studi Avanzati (SISSA), Via Bonomea 265, 34136 Trieste, Italy.
Structure. 2015 Aug 4;23(8):1516-1525. doi: 10.1016/j.str.2015.05.022. Epub 2015 Jul 9.
Identifying dynamical, quasi-rigid domains in proteins provides a powerful means for characterizing functionally oriented structural changes via a parsimonious set of degrees of freedom. In fact, the relative displacements of few dynamical domains usually suffice to rationalize the mechanics underpinning biological functionality in proteins and can even be exploited for structure determination or refinement purposes. Here we present SPECTRUS, a general scheme that, by solely using amino acid distance fluctuations, can pinpoint the innate quasi-rigid domains of single proteins or large complexes in a robust way. Consistent domains are usually obtained by using either a pair of representative structures or thousands of conformers. The functional insights offered by the approach are illustrated for biomolecular systems of very different size and complexity such as kinases, ion channels, and viral capsids. The decomposition tool is available as a software package and web server at spectrus.sissa.it.
确定蛋白质中的动态、准刚性结构域为通过一组简洁的自由度来描述功能导向的结构变化提供了有力的手段。事实上,少数动态结构域的相对位移通常足以解释蛋白质中支撑生物学功能的力学原理,甚至可以用于结构确定或细化目的。在这里,我们提出了 SPECTRUS,这是一种通用方案,仅使用氨基酸距离波动就可以稳健地确定单个蛋白质或大复合物的固有准刚性结构域。通常使用一对代表性结构或数千个构象来获得一致的结构域。该方法为大小和复杂性非常不同的生物分子系统(如激酶、离子通道和病毒衣壳)提供了功能见解。该分解工具作为软件包和网络服务器在 spectrus.sissa.it 上提供。