Gene Expression and Regulation Program, The Wistar Institute, Philadelphia, PA, 19104, USA.
Epigenetics Institute, University of Pennsylvania, Philadelphia, PA, 19104, USA.
Nat Commun. 2022 Jan 10;13(1):53. doi: 10.1038/s41467-021-27722-6.
R-loops are three-stranded nucleic acid structures that accumulate on chromatin in neurological diseases and cancers and contribute to genome instability. Using a proximity-dependent labeling system, we identified distinct classes of proteins that regulate R-loops in vivo through different mechanisms. We show that ATRX suppresses R-loops by interacting with RNAs and preventing R-loop formation. Our proteomics screen also discovered an unexpected enrichment for proteins containing zinc fingers and homeodomains. One of the most consistently enriched proteins was activity-dependent neuroprotective protein (ADNP), which is frequently mutated in ASD and causal in ADNP syndrome. We find that ADNP resolves R-loops in vitro and that it is necessary to suppress R-loops in vivo at its genomic targets. Furthermore, deletion of the ADNP homeodomain severely diminishes R-loop resolution activity in vitro, results in R-loop accumulation at ADNP targets, and compromises neuronal differentiation. Notably, patient-derived human induced pluripotent stem cells that contain an ADNP syndrome-causing mutation exhibit R-loop and CTCF accumulation at ADNP targets. Our findings point to a specific role for ADNP-mediated R-loop resolution in physiological and pathological neuronal function and, more broadly, to a role for zinc finger and homeodomain proteins in R-loop regulation, with important implications for developmental disorders and cancers.
R 环是三链核酸结构,在神经疾病和癌症中积累在染色质上,导致基因组不稳定。我们使用一种依赖邻近的标记系统,鉴定出了不同类别的蛋白质,它们通过不同的机制在体内调节 R 环。我们表明,ATRX 通过与 RNA 相互作用并阻止 R 环形成来抑制 R 环。我们的蛋白质组学筛选还意外地发现富含含有锌指和同源结构域的蛋白质。其中最丰富的蛋白质之一是活性依赖性神经保护蛋白(ADNP),它在 ASD 中经常发生突变,并且是 ADNP 综合征的致病基因。我们发现 ADNP 在体外能解析 R 环,并且它在体内其基因组靶标上抑制 R 环是必需的。此外,ADNP 同源结构域的缺失严重降低了体外 R 环解析活性,导致 ADNP 靶标处 R 环积累,并损害神经元分化。值得注意的是,含有 ADNP 综合征致病突变的患者来源的人类诱导多能干细胞在 ADNP 靶标处表现出 R 环和 CTCF 积累。我们的研究结果表明,ADNP 介导的 R 环解析在生理和病理神经元功能中具有特定作用,更广泛地说,锌指和同源结构域蛋白在 R 环调控中具有重要作用,这对发育障碍和癌症具有重要意义。