Massachusetts General Hospital Cancer Center, Harvard Medical School, Boston, MA, USA.
Department of Biological Chemistry, Center for Epigenetics and Metabolism, Chao Family Comprehensive Cancer Center, School of Medicine, University of California Irvine, Irvine, CA, USA.
Nat Commun. 2021 Mar 11;12(1):1602. doi: 10.1038/s41467-021-21891-0.
APOBEC mutagenesis, a major driver of cancer evolution, is known for targeting TpC sites in DNA. Recently, we showed that APOBEC3A (A3A) targets DNA hairpin loops. Here, we show that DNA secondary structure is in fact an orthogonal influence on A3A substrate optimality and, surprisingly, can override the TpC sequence preference. VpC (non-TpC) sites in optimal hairpins can outperform TpC sites as mutational hotspots. This expanded understanding of APOBEC mutagenesis illuminates the genomic Twin Paradox, a puzzling pattern of closely spaced mutation hotspots in cancer genomes, in which one is a canonical TpC site but the other is a VpC site, and double mutants are seen only in trans, suggesting a two-hit driver event. Our results clarify this paradox, revealing that both hotspots in these twins are optimal A3A substrates. Our findings reshape the notion of a mutation signature, highlighting the additive roles played by DNA sequence and DNA structure.
APOBEC 诱变是癌症进化的主要驱动因素,其已知靶向 DNA 中的 TpC 位点。最近,我们表明 APOBEC3A(A3A)靶向 DNA 发夹环。在这里,我们表明 DNA 二级结构实际上是对 A3A 底物最优性的正交影响,并且令人惊讶的是,它可以覆盖 TpC 序列偏好。在最优发夹中的 VpC(非-TpC)位点可以胜过 TpC 位点成为突变热点。对 APOBEC 诱变的这种扩展理解阐明了基因组双胞胎悖论,这是癌症基因组中紧密间隔的突变热点的一个令人困惑的模式,其中一个是典型的 TpC 位点,另一个是 VpC 位点,并且仅在 trans 中观察到双突变体,这表明存在双打击驱动事件。我们的结果阐明了这一悖论,表明这些双胞胎中的两个热点都是最优的 A3A 底物。我们的发现重塑了突变特征的概念,强调了 DNA 序列和 DNA 结构所发挥的附加作用。