Liu Lei, Wade Rebecca C, Heermann Dieter W
Institute for Theoretical Physics Heidelberg University, Heidelberg, Germany.
Interdisciplinary Center for Scientific Computing Heidelberg University, Heidelberg, Germany.
Proteins. 2015 Sep;83(9):1604-15. doi: 10.1002/prot.24845. Epub 2015 Jul 1.
The conformational properties of unbound multi-Cys2 His2 (mC2H2) zinc finger proteins, in which zinc finger domains are connected by flexible linkers, are studied by a multiscale approach. Three methods on different length scales are utilized. First, atomic detail molecular dynamics simulations of one zinc finger and its adjacent flexible linker confirmed that the zinc finger is more rigid than the flexible linker. Second, the end-to-end distance distributions of mC2H2 zinc finger proteins are computed using an efficient atomistic pivoting algorithm, which only takes excluded volume interactions into consideration. The end-to-end distance distribution gradually changes its profile, from left-tailed to right-tailed, as the number of zinc fingers increases. This is explained by using a worm-like chain model. For proteins of a few zinc fingers, an effective bending constraint favors an extended conformation. Only for proteins containing more than nine zinc fingers, is a somewhat compacted conformation preferred. Third, a mesoscale model is modified to study both the local and the global conformational properties of multi-C2H2 zinc finger proteins. Simulations of the CCCTC-binding factor (CTCF), an important mC2H2 zinc finger protein for genome spatial organization, are presented.
采用多尺度方法研究了未结合的多Cys2 His2(mC2H2)锌指蛋白的构象性质,其中锌指结构域通过柔性接头连接。使用了三种不同长度尺度的方法。首先,对一个锌指及其相邻的柔性接头进行原子细节分子动力学模拟,证实锌指比柔性接头更刚性。其次,使用一种仅考虑排除体积相互作用的高效原子级枢轴算法计算mC2H2锌指蛋白的端到端距离分布。随着锌指数量的增加,端到端距离分布的轮廓逐渐从左尾变为右尾。这可以用蠕虫状链模型来解释。对于少数锌指的蛋白质,有效的弯曲约束有利于伸展构象。只有对于含有九个以上锌指的蛋白质,才倾向于某种紧凑的构象。第三,修改了一个中尺度模型,以研究多C2H2锌指蛋白的局部和全局构象性质。展示了CCCTC结合因子(CTCF)的模拟,CTCF是一种对基因组空间组织很重要的mC2H2锌指蛋白。