Higo Junichi, Takashima Hajime, Fukunishi Yoshifumi, Yoshimori Atsushi
Graduate School of Simulation Studies, University of Hyogo, Kobe, Japan.
Department of Research and Development, PRISM BioLab Co., Ltd., Fujisawa, Japan.
J Comput Chem. 2021 May 30;42(14):956-969. doi: 10.1002/jcc.26516. Epub 2021 Mar 23.
A heterocyclic compound mS-11 is a helix-mimetic designed to inhibit binding of an intrinsic disordered protein neural restrictive silence factor/repressor element 1 silencing factor (NRSF/REST) to a receptor protein mSin3B. We apply a generalized ensemble method, multi-dimensional virtual-system coupled molecular dynamics developed by ourselves recently, to a system consisting of mS-11 and mSin3B, and obtain a thermally equilibrated distribution, which is comprised of the bound and unbound states extensively. The lowest free-energy position of mS-11 coincides with the NRSF/REST position in the experimentally-determined NRSF/REST-mSin3B complex. Importantly, the molecular orientation of mS-11 is ordering in a wide region around mSin3B. The resultant binding scenario is: When mS-11 is distant from the binding site of mSin3B, mS-11 descends the free-energy slope toward the binding site maintaining the molecular orientation to be advantageous for binding. Then, finally a long and flexible hydrophobic sidechain of mS-11 fits into the binding site, which is the lowest-free-energy complex structure inhibiting NRSF/REST binding to mSin3B.
杂环化合物mS-11是一种模拟螺旋结构的化合物,旨在抑制内在无序蛋白神经限制性沉默因子/阻遏元件1沉默因子(NRSF/REST)与受体蛋白mSin3B的结合。我们将一种广义系综方法,即我们最近开发的多维虚拟系统耦合分子动力学方法,应用于由mS-11和mSin3B组成的系统,并获得了一个热平衡分布,该分布广泛地包含了结合态和未结合态。mS-11的最低自由能位置与实验测定的NRSF/REST-mSin3B复合物中NRSF/REST的位置一致。重要的是,mS-11的分子取向在mSin3B周围的广泛区域内呈有序状态。由此产生的结合情况是:当mS-11远离mSin3B的结合位点时,mS-11沿着自由能斜率向结合位点下降,同时保持有利于结合的分子取向。然后,最后mS-11的一条长而灵活的疏水侧链嵌入结合位点,这就是抑制NRSF/REST与mSin3B结合的最低自由能复合物结构。