Department of Biochemistry and Biophysics, and the Center for RNA Biology, University of Rochester School of Medicine and Dentistry, Rochester, New York 14642, United States.
Biochemistry. 2024 Nov 5;63(21):2718-2722. doi: 10.1021/acs.biochem.4c00344. Epub 2024 Oct 10.
mutations affecting the pre-mRNA splicing factor U2AF2 are associated with developmental delays and intellectual disabilities, yet the molecular basis is unknown. Here, we demonstrated by fluorescence anisotropy RNA binding assays that recurrent missense mutants (Arg149Trp, Arg150His, or Arg150Cys) decreased the binding affinity of U2AF2 for a consensus splice site RNA. Crystal structures at 1.4 Å resolutions showed that Arg149Trp or Arg150His disrupted hydrogen bonds between U2AF2 and the terminal nucleotides of the RNA site. Reanalysis of publicly available RNaseq data confirmed that U2AF2 depletion altered splicing of transcripts encoding RNA binding proteins (RBPs). These results confirmed that the impaired RNA interactions of Arg149Trp and Arg150His U2AF2 variants could contribute to dysregulating an RBP-governed neurodevelopmental program of alternative splicing.
影响 pre-mRNA 剪接因子 U2AF2 的突变与发育迟缓及智力障碍有关,但分子基础尚不清楚。在这里,我们通过荧光各向异性 RNA 结合分析实验证明,反复出现的错义突变体(Arg149Trp、Arg150His 或 Arg150Cys)降低了 U2AF2 与保守剪接位点 RNA 的结合亲和力。1.4Å分辨率的晶体结构显示,Arg149Trp 或 Arg150His 破坏了 U2AF2 与 RNA 结合位点末端核苷酸之间的氢键。对公开可用的 RNA-seq 数据的重新分析证实,U2AF2 耗竭改变了编码 RNA 结合蛋白(RBPs)的转录本的剪接。这些结果证实,Arg149Trp 和 Arg150His U2AF2 变体与 RNA 的相互作用受损可能导致调节 RBP 调控的神经发育性可变剪接程序失调。