LncRNA 介导的乳腺癌景观中替代剪接的协调。

IF 2.6 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Biochimica et Biophysica Acta-Gene Regulatory Mechanisms Pub Date : 2024-02-08 DOI:10.1016/j.bbagrm.2024.195017
Samarth Kansara , Prajwali Sawant , Taranjeet Kaur , Manoj Garg , Amit Kumar Pandey
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引用次数: 0

摘要

替代剪接(AS)是真核生物转录后的一个基本过程,可使单个基因产生不同的 mRNA 转录本,从而提高蛋白质的变异性。这一过程包括切除前 mRNA 中的内含子和连接外显子,以形成成熟的 mRNA。由此产生的成熟 mRNA 表现出不同的外显子组合,从而形成功能多样性。AS 的失调可大幅调节蛋白质功能,影响包括癌症在内的多种疾病的发生和发展。非编码 RNA(ncRNA)有别于蛋白编码 RNA,包括短型和长型。根据最新研究,长非编码 RNA(lncRNA)在调节多个细胞过程,特别是替代剪接过程中发挥着重要作用。本综述深入探讨了有关 lncRNA 如何影响乳腺癌替代剪接的最新发现。此外,它还探讨了以 lncRNAs 为靶点的潜在治疗策略。
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LncRNA-mediated orchestrations of alternative splicing in the landscape of breast cancer

Alternative splicing (AS) is a fundamental post-transcriptional process in eukaryotes, enabling a single gene to generate diverse mRNA transcripts, thereby enhancing protein variability. This process involves the excision of introns and the joining of exons in pre-mRNA(s) to form mature mRNA. The resulting mature mRNAs exhibit various combinations of exons, contributing to functional diversity. Dysregulation of AS can substantially modulate protein functions, impacting the onset and progression of numerous diseases, including cancer. Non-coding RNAs (ncRNAs) are distinct from protein-coding RNAs and consist of short and long types. Long non-coding RNAs (lncRNAs) play an important role in regulating several cellular processes, particularly alternative splicing, according to new research. This review provides insight into the latest discoveries concerning how lncRNAs influence alternative splicing within the realm of breast cancer. Additionally, it explores potential therapeutic strategies focused on targeting lncRNAs.

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来源期刊
CiteScore
9.20
自引率
2.10%
发文量
63
审稿时长
44 days
期刊介绍: BBA Gene Regulatory Mechanisms includes reports that describe novel insights into mechanisms of transcriptional, post-transcriptional and translational gene regulation. Special emphasis is placed on papers that identify epigenetic mechanisms of gene regulation, including chromatin, modification, and remodeling. This section also encompasses mechanistic studies of regulatory proteins and protein complexes; regulatory or mechanistic aspects of RNA processing; regulation of expression by small RNAs; genomic analysis of gene expression patterns; and modeling of gene regulatory pathways. Papers describing gene promoters, enhancers, silencers or other regulatory DNA regions must incorporate significant functions studies.
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