Department of Neurogenomics, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University, Okayama, Japan.
Faculty of Science, Department of Biochemistry, Okayama University of Science, Okayama, Japan.
PLoS One. 2023 Aug 4;18(8):e0289599. doi: 10.1371/journal.pone.0289599. eCollection 2023.
A human protein heterogeneous ribonucleoprotein U (hnRNP U) also known as Scaffold attachment factor A (SAF-A) and its orthologous rat protein SP120 are abundant and multifunctional nuclear protein that directly binds to both DNA and RNA. The C-terminal region of hnRNP U enriched with arginine and glycine is essential for the interaction with RNA and the N-terminal region of SAF-A termed SAP domain has been ascribed to the DNA binding. We have reported that rat hnRNP U specifically and cooperatively binds to AT-rich DNA called nuclear scaffold/matrix-associated region (S/MAR) although its detailed mechanism remained unclear. In the present study analysis of hnRNP U deletion mutants revealed for the first time that a C-terminal domain enriched with Arg-Gly (defined here as 'RG domain') is predominantly important for the S/MAR-selective DNA binding activities. RG domain alone directly bound to S/MAR and coexistence with the SAP domain exerted a synergistic effect. The binding was inhibited by netropsin, a minor groove binder with preference to AT pairs that are enriched in S/MAR, suggesting that RG domain interacts with minor groove of S/MAR DNA. Interestingly, excess amounts of RNA attenuated the RG domain-dependent S/MAR-binding of hnRNP U. Taken together, hnRNP U may be the key element for the RNA-regulated recognition of S/MAR DNA and thus contributing to the dynamic structural changes of chromatin compartments.
一种人类蛋白异质核糖核蛋白 U(hnRNP U),也称为支架附着因子 A(SAF-A)及其同源大鼠蛋白 SP120,是一种丰富且多功能的核蛋白,可直接与 DNA 和 RNA 结合。hnRNP U 的富含精氨酸和甘氨酸的 C 末端区域对于与 RNA 的相互作用是必不可少的,而 SAF-A 的 N 末端区域称为 SAP 结构域已被归因于 DNA 结合。我们已经报道了大鼠 hnRNP U 特异性且协同地与富含 AT 的 DNA 结合,称为核支架/基质相关区域(S/MAR),尽管其详细机制仍不清楚。在本研究中,对 hnRNP U 缺失突变体的分析首次揭示,富含 Arg-Gly 的 C 末端结构域(此处定义为“RG 结构域”)对于 S/MAR 选择性 DNA 结合活性至关重要。单独的 RG 结构域直接与 S/MAR 结合,并且与 SAP 结构域共存会产生协同效应。该结合被 netropsin 抑制,netropsin 是一种优先与富含 S/MAR 的 AT 对结合的小沟结合物,表明 RG 结构域与 S/MAR DNA 的小沟相互作用。有趣的是,过量的 RNA 减弱了 hnRNP U 对 S/MAR 的 RG 结构域依赖性结合。总之,hnRNP U 可能是 RNA 调节的 S/MAR DNA 识别的关键因素,从而有助于染色质隔室的动态结构变化。