https://ror.org/043mz5j54 Department of Cell and Tissue Biology, University of California, San Francisco, San Francisco, CA, USA.
https://ror.org/043mz5j54 Tetrad Graduate Program, University of California, San Francisco, San Francisco, CA, USA.
Life Sci Alliance. 2024 May 21;7(8). doi: 10.26508/lsa.202302554. Print 2024 Aug.
IGHMBP2 is a nonessential, superfamily 1 DNA/RNA helicase that is mutated in patients with rare neuromuscular diseases SMARD1 and CMT2S. IGHMBP2 is implicated in translational and transcriptional regulation via biochemical association with ribosomal proteins, pre-rRNA processing factors, and tRNA-related species. To uncover the cellular consequences of perturbing , we generated full and partial IGHMBP2 deletion K562 cell lines. Using polysome profiling and a nascent protein synthesis assay, we found that IGHMBP2 deletion modestly reduces global translation. We performed Ribo-seq and RNA-seq and identified diverse gene expression changes due to IGHMBP2 deletion, including up-regulation. With recent studies showing the integrated stress response (ISR) can contribute to tRNA metabolism-linked neuropathies, we asked whether perturbing promotes ISR activation. We generated ATF4 reporter cell lines and found IGHMBP2 knockout cells demonstrate basal, chronic ISR activation. Our work expands upon the impact of IGHMBP2 in translation and elucidates molecular mechanisms that may link mutant IGHMBP2 to severe clinical phenotypes.
IGHMBP2 是一种非必需的超家族 1 DNA/RNA 解旋酶,在罕见的神经肌肉疾病 SMARD1 和 CMT2S 患者中发生突变。IGHMBP2 通过与核糖体蛋白、pre-rRNA 加工因子和 tRNA 相关物质的生化关联,参与翻译和转录调控。为了揭示扰乱 IGHMBP2 的细胞后果,我们生成了完全和部分缺失 IGHMBP2 的 K562 细胞系。使用多核糖体分析和新生蛋白合成测定,我们发现 IGHMBP2 缺失会适度降低全局翻译。我们进行了 Ribo-seq 和 RNA-seq,并由于 IGHMBP2 缺失而鉴定出多种基因表达变化,包括某些基因的上调。最近的研究表明,综合应激反应 (ISR) 可能有助于与 tRNA 代谢相关的神经病,我们询问扰乱 IGHMBP2 是否会促进 ISR 激活。我们生成了 ATF4 报告细胞系,发现 IGHMBP2 敲除细胞表现出基础、慢性的 ISR 激活。我们的工作扩展了 IGHMBP2 在翻译中的作用,并阐明了可能将突变 IGHMBP2 与严重临床表型联系起来的分子机制。