Department of Biochemistry, Molecular Biology and Biophysics, University of Minnesota, Minneapolis, Minnesota, 55455, USA.
Masonic Cancer Center, University of Minnesota, Minneapolis, Minnesota, 55455, USA.
Sci Rep. 2017 Dec 12;7(1):17415. doi: 10.1038/s41598-017-17694-3.
The APOBEC3B (A3B) single-stranded DNA (ssDNA) cytosine deaminase has important roles in innate immunity but is also a major endogenous source of mutations in cancer. Previous structural studies showed that the C-terminal catalytic domain of human A3B has a tightly closed active site, and rearrangement of the surrounding loops is required for binding to substrate ssDNA. Here we report structures of the A3B catalytic domain in a new crystal form that show alternative, yet still closed, conformations of active site loops. All-atom molecular dynamics simulations support the dynamic behavior of active site loops and recapitulate the distinct modes of interactions that maintain a closed active site. Replacing segments of A3B loop 1 to mimic the more potent cytoplasmic deaminase APOBEC3A leads to elevated ssDNA deaminase activity, likely by facilitating opening of the active site. These data collectively suggest that conformational equilibrium of the A3B active site loops, skewed toward being closed, controls enzymatic activity by regulating binding to ssDNA substrates.
APOBEC3B(A3B)单链 DNA(ssDNA)胞嘧啶脱氨酶在先天免疫中具有重要作用,但也是癌症中突变的主要内源性来源。先前的结构研究表明,人 A3B 的 C 端催化结构域具有紧密封闭的活性位点,并且需要周围环的重排才能与底物 ssDNA 结合。在这里,我们报告了 A3B 催化结构域在新晶体形式中的结构,显示了活性位点环的替代但仍然封闭的构象。全原子分子动力学模拟支持活性位点环的动态行为,并再现了维持封闭活性位点的不同相互作用模式。用模拟更有效的细胞质脱氨酶 APOBEC3A 的 A3B 环 1 的替换片段导致 ssDNA 脱氨酶活性升高,可能是通过促进活性位点的打开。这些数据共同表明,A3B 活性位点环的构象平衡向封闭倾斜,通过调节与 ssDNA 底物的结合来控制酶活性。