School of Natural Sciences, Massey University, Palmerston North, New Zealand.
Department of Biochemistry, Molecular Biology, and Biophysics, University of Minnesota-Twin Cities, Minneapolis, MN, USA.
Nat Commun. 2023 Oct 11;14(1):6382. doi: 10.1038/s41467-023-42174-w.
The normally antiviral enzyme APOBEC3A is an endogenous mutagen in human cancer. Its single-stranded DNA C-to-U editing activity results in multiple mutagenic outcomes including signature single-base substitution mutations (isolated and clustered), DNA breakage, and larger-scale chromosomal aberrations. APOBEC3A inhibitors may therefore comprise a unique class of anti-cancer agents that work by blocking mutagenesis, slowing tumor evolvability, and preventing detrimental outcomes such as drug resistance and metastasis. Here we reveal the structural basis of competitive inhibition of wildtype APOBEC3A by hairpin DNA bearing 2'-deoxy-5-fluorozebularine in place of the cytidine in the TC substrate motif that is part of a 3-nucleotide loop. In addition, the structural basis of APOBEC3A's preference for YTCD motifs (Y = T, C; D = A, G, T) is explained. The nuclease-resistant phosphorothioated derivatives of these inhibitors have nanomolar potency in vitro and block APOBEC3A activity in human cells. These inhibitors may be useful probes for studying APOBEC3A activity in cellular systems and leading toward, potentially as conjuvants, next-generation, combinatorial anti-mutator and anti-cancer therapies.
正常情况下具有抗病毒活性的酶 APOBEC3A 是人类癌症中的一种内源性诱变剂。其单链 DNA 的 C 到 U 编辑活性导致多种诱变结果,包括特征性单碱基取代突变(孤立和聚集)、DNA 断裂和更大规模的染色体畸变。因此,APOBEC3A 抑制剂可能构成一类独特的抗癌药物,通过阻断诱变、减缓肿瘤可变性以及预防耐药性和转移等不利后果来发挥作用。在这里,我们揭示了发夹 DNA 竞争性抑制野生型 APOBEC3A 的结构基础,该发夹 DNA 用 2'-脱氧-5-氟尿嘧啶核苷替代 TC 底物基序中的胞嘧啶,该基序是 3 个核苷酸环的一部分。此外,还解释了 APOBEC3A 对 YTCD 基序(Y= T、C;D= A、G、T)的偏好的结构基础。这些抑制剂的核酸酶抗性硫代磷酸酯衍生物在体外具有纳摩尔效力,并阻断人细胞中的 APOBEC3A 活性。这些抑制剂可用于研究细胞系统中 APOBEC3A 活性的有用探针,并可能作为佐剂,开发下一代组合抗突变和抗癌疗法。