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拼接起来:连接可变剪接和关节炎。

Get Spliced: Uniting Alternative Splicing and Arthritis.

机构信息

Center for Translational Immunology, University Medical Center Utrecht, 3584 CX Utrecht, The Netherlands.

Division of Pediatric Rheumatology and Immunology, Wilhelmina Children's Hospital, 3584 CX Utrecht, The Netherlands.

出版信息

Int J Mol Sci. 2024 Jul 25;25(15):8123. doi: 10.3390/ijms25158123.

Abstract

Immune responses demand the rapid and precise regulation of gene protein expression. Splicing is a crucial step in this process; ~95% of protein-coding gene transcripts are spliced during mRNA maturation. Alternative splicing allows for distinct functional regulation, as it can affect transcript degradation and can lead to alternative functional protein isoforms. There is increasing evidence that splicing can directly regulate immune responses. For several genes, immune cells display dramatic changes in isoform-level transcript expression patterns upon activation. Recent advances in long-read RNA sequencing assays have enabled an unbiased and complete description of transcript isoform expression patterns. With an increasing amount of cell types and conditions that have been analyzed with such assays, thousands of novel transcript isoforms have been identified. Alternative splicing has been associated with autoimmune diseases, including arthritis. Here, GWASs revealed that SNPs associated with arthritis are enriched in splice sites. In this review, we will discuss how alternative splicing is involved in immune responses and how the dysregulation of alternative splicing can contribute to arthritis pathogenesis. In addition, we will discuss the therapeutic potential of modulating alternative splicing, which includes examples of spliceform-based biomarkers for disease severity or disease subtype, splicing manipulation using antisense oligonucleotides, and the targeting of specific immune-related spliceforms using antibodies.

摘要

免疫反应需要快速而精确地调节基因蛋白表达。剪接是这个过程中的关键步骤;在 mRNA 成熟过程中,约 95%的蛋白质编码基因转录本都被剪接。可变剪接允许进行不同的功能调节,因为它可以影响转录本的降解,并导致不同的功能蛋白同工型。越来越多的证据表明,剪接可以直接调节免疫反应。对于一些基因,免疫细胞在激活时会在同工型水平的转录表达模式上发生显著变化。长读长 RNA 测序分析的最新进展使得能够对转录本同工型表达模式进行无偏和完整的描述。随着越来越多的细胞类型和条件用这种方法进行了分析,已经鉴定出了数千种新的转录本同工型。可变剪接与自身免疫性疾病有关,包括关节炎。在这里,GWAS 揭示了与关节炎相关的 SNP 富集在剪接位点。在这篇综述中,我们将讨论可变剪接如何参与免疫反应,以及可变剪接的失调如何导致关节炎发病机制。此外,我们还将讨论调节可变剪接的治疗潜力,包括疾病严重程度或疾病亚型的剪接体生物标志物的例子、使用反义寡核苷酸进行剪接操作以及使用抗体靶向特定的免疫相关剪接体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eae6/11311815/a5dd0baa2403/ijms-25-08123-g001.jpg

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