Department of Chemistry and Biochemistry , University of California, San Diego , La Jolla , California 92093-0340 , United States.
Department of Biochemistry, Molecular Biology and Biophysics , University of Minnesota , Minneapolis , Minnesota 55455 , United States.
J Chem Inf Model. 2019 May 28;59(5):2264-2273. doi: 10.1021/acs.jcim.8b00427. Epub 2018 Sep 10.
APOBEC3B (A3B) is a prominent source of mutation in many cancers. To date, it has been difficult to capture the native protein-DNA interactions that confer A3B's substrate specificity by crystallography due to the highly dynamic nature of wild-type A3B active site. We use computational tools to restore a recent crystal structure of a DNA-bound A3B C-terminal domain mutant construct to its wild type sequence, and run molecular dynamics simulations to study its substrate recognition mechanisms. Analysis of these simulations reveal dynamics of the native A3Bctd-oligonucleotide interactions, including the experimentally inaccessible loop 1-oligonucleotide interactions. A second series of simulations in which the target cytosine nucleotide was computationally mutated from a deoxyribose to a ribose show a change in sugar ring pucker, leading to a rearrangement of the binding site and revealing a potential intermediate in the binding pathway. Finally, apo simulations of A3B, starting from the DNA-bound open state, experience a rapid and consistent closure of the binding site, reaching conformations incompatible with substrate binding. This study reveals a more realistic and dynamic view of the wild type A3B binding site and provides novel insights for structure-guided design efforts for A3B.
APOBEC3B(A3B)是许多癌症中突变的主要来源。迄今为止,由于野生型 A3B 活性位点的高度动态性质,通过晶体学很难捕获赋予 A3B 底物特异性的天然蛋白-DNA 相互作用。我们使用计算工具将最近的 DNA 结合 A3B C 末端结构域突变体构建体的晶体结构恢复为其野生型序列,并运行分子动力学模拟来研究其底物识别机制。这些模拟分析揭示了天然 A3Bctd-寡核苷酸相互作用的动力学,包括实验上无法接近的环 1-寡核苷酸相互作用。在第二个系列的模拟中,我们通过计算将靶标胞嘧啶核苷酸从脱氧核糖突变为核糖,发现糖环构象发生变化,导致结合位点重新排列,并揭示了结合途径中的一个潜在中间产物。最后,从 DNA 结合的开放状态开始的 A3B 无配体模拟经历了结合位点的快速和一致的闭合,达到与底物结合不兼容的构象。这项研究揭示了野生型 A3B 结合位点更现实和动态的视图,并为基于结构的 A3B 设计工作提供了新的见解。