Department of Biochemistry, University of California, Riverside, CA, 92521, USA.
Nat Commun. 2020 May 8;11(1):2294. doi: 10.1038/s41467-020-16213-9.
DNA methyltransferase DNMT3A is essential for establishment of mammalian DNA methylation during development. The R882H DNMT3A is a hotspot mutation in acute myeloid leukemia (AML) causing aberrant DNA methylation. However, how this mutation affects the structure and function of DNMT3A remains unclear. Here we report structural characterization of wild-type and R882H-mutated DNMT3A in complex with DNA substrates with different sequence contexts. A loop from the target recognition domain (TRD loop) recognizes the CpG dinucleotides in a +1 flanking site-dependent manner. The R882H mutation reduces the DNA binding at the homodimeric interface, as well as the molecular link between the homodimeric interface and TRD loop, leading to enhanced dynamics of TRD loop. Consistently, in vitro methylation analyses indicate that the R882H mutation compromises the enzymatic activity, CpG specificity and flanking sequence preference of DNMT3A. Together, this study uncovers multiple defects of DNMT3A caused by the R882H mutation in AML.
DNA 甲基转移酶 DNMT3A 在哺乳动物发育过程中建立 DNA 甲基化中是必不可少的。R882H DNMT3A 是急性髓细胞白血病 (AML) 中的热点突变,导致异常的 DNA 甲基化。然而,这种突变如何影响 DNMT3A 的结构和功能仍不清楚。在这里,我们报告了野生型和 R882H 突变型 DNMT3A 与具有不同序列背景的 DNA 底物复合物的结构特征。来自靶标识别结构域 (TRD 环) 的一个环以依赖于+1 侧翼位点的方式识别 CpG 二核苷酸。R882H 突变降低了同源二聚体界面处的 DNA 结合,以及同源二聚体界面和 TRD 环之间的分子连接,导致 TRD 环的动力学增强。一致地,体外甲基化分析表明,R882H 突变使 DNMT3A 的酶活性、CpG 特异性和侧翼序列偏好性受损。总之,这项研究揭示了 AML 中 R882H 突变导致的 DNMT3A 的多种缺陷。