Dršata Tomáš, Zgarbová Marie, Jurečka Petr, Šponer Jiří, Lankaš Filip
Institute of Organic Chemistry and Biochemistry, Academy of Sciences of the Czech Republic, Prague, Czech Republic; Institute of Biophysics, Academy of Sciences of the Czech Republic, Brno, Czech Republic.
Regional Centre of Advanced Technologies and Materials, Department of Physical Chemistry, Faculty of Science, Palacký University, Olomouc, Czech Republic.
Biophys J. 2016 Feb 23;110(4):874-6. doi: 10.1016/j.bpj.2015.12.039. Epub 2016 Jan 27.
A recent study described an allosteric effect in which the binding of a protein to DNA is influenced by another protein bound nearby. The effect shows a periodicity of ∼10 basepairs and decays with increasing protein-protein distance. As a mechanistic explanation, the authors reported a similar periodic, decaying pattern of the correlation coefficient between major groove widths inferred from a shorter molecular dynamics simulation. Here we show that in a state-of-the-art, microsecond-long simulation of the same DNA sequence, the periodicity of the correlation coefficient is not observed. To study the problem further, we extend an earlier mechanical model of DNA allostery based on constrained minimization of effective quadratic deformation energy of the DNA. We demonstrate that, if the constraints mimicking the bound proteins are properly applied, the periodicity in the binding energy is indeed recovered.
最近的一项研究描述了一种变构效应,即一种蛋白质与DNA的结合受到附近另一种结合蛋白质的影响。这种效应呈现出约10个碱基对的周期性,并随着蛋白质-蛋白质距离的增加而衰减。作为一种机理解释,作者报告了从较短的分子动力学模拟推断出的大沟宽度之间的相关系数具有类似的周期性衰减模式。在这里,我们表明,在对相同DNA序列进行的长达微秒的先进模拟中,未观察到相关系数的周期性。为了进一步研究这个问题,我们扩展了一个早期基于DNA有效二次变形能的约束最小化的DNA变构力学模型。我们证明,如果正确应用模拟结合蛋白质的约束条件,结合能的周期性确实会恢复。