生物
RNA编辑
核糖核酸
非编码RNA
马拉特1
长非编码RNA
计算生物学
遗传学
基因
作者
Chi Zhang,Yu‐Jing Lu,Mei Wang,Bingjie Chen,Feifei Xiong,Costas Mitsopoulos,Olivia W. Rossanese,Xiuling Li,Paul A. Clarke
出处
期刊:Oncogene
[Springer Nature]
日期:2024-09-25
标识
DOI:10.1038/s41388-024-03171-5
摘要
Abstract RNA editing is a crucial post-transcriptional process that influences gene expression and increases the diversity of the proteome as a result of amino acid substitution. Recently, the APOBEC3 family has emerged as a significant player in this mechanism, with APOBEC3A (A3A) having prominent roles in base editing during immune and stress responses. APOBEC3B (A3B), another family member, has gained attention for its potential role in generating genomic DNA mutations in breast cancer. In this study, we coupled an inducible expression cell model with a novel methodology for identifying differential variants in RNA (DVRs) to map A3B-mediated RNA editing sites in a breast cancer cell model. Our findings indicate that A3B engages in selective RNA editing including targeting NEAT1 and MALAT1 long non-coding RNAs that are often highly expressed in tumour cells. Notably, the binding of these RNAs sequesters A3B and suppresses global A3B activity against RNA and DNA. Release of A3B from NEAT1/MALAT1 resulted in increased A3B activity at the expense of A3A activity suggesting a regulatory feedback loop between the two family members. This research substantially advances our understanding of A3B’s role in RNA editing, its mechanistic underpinnings, and its potential relevance in the pathogenesis of breast cancer.
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