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mRNA转录变体的检测

Detection of mRNA Transcript Variants.

作者信息

Vo Kevin, Shila Sharmin, Sharma Yashica, Pei Grace J, Rosales Cinthia Y, Dahiya Vinesh, Fields Patrick E, Rumi M A Karim

机构信息

Department of Pathology and Laboratory Medicine, University of Kansas Medical Center, Kansas City, KS 66160, USA.

出版信息

Genes (Basel). 2025 Mar 16;16(3):343. doi: 10.3390/genes16030343.

Abstract

Most eukaryotic genes express more than one mature mRNA, defined as transcript variants. This complex phenomenon arises from various mechanisms, such as using alternative transcription start sites and alternative post-transcriptional processing events. The resulting transcript variants can lead to synthesizing proteins that possess distinct functional domains or may even generate noncoding RNAs, each with unique roles in cellular processes. The generation of these transcript variants is not merely a random occurrence; it is cell-type specific and varies with developmental stages, aging processes, or pathogenesis of diseases. This highlights the biological significance of transcript variants in regulating gene expression and their potential impact on cellular functionality. Despite the biological importance, investigating transcript variants has been hampered by challenges associated with detecting their expression. This review article addresses the advancements in molecular techniques in detecting transcript variants. Traditional methods such as RT-PCR and RT-qPCR can easily detect known transcript variants using primers that target unique exons associated with the variants. Other techniques like RACE-PCR and hybridization-based methods, including Northern blotting, RNase protection assays, and microarrays, have also been utilized to detect transcript variants. Nevertheless, RNA sequencing (RNA-Seq) has emerged as a powerful technique for identifying transcript variants, especially those with previously unknown sequences. The effectiveness of RNA sequencing in transcript variant detection depends on the specific sequencing approach and the precision of data analysis. By understanding the strengths and weaknesses of each laboratory technique, researchers can develop more effective strategies for detecting mRNA transcript variants. This ability will be crucial for our comprehensive understanding of gene regulation and the implications of transcript diversity in various biological contexts.

摘要

大多数真核基因会表达不止一种成熟mRNA,即转录变体。这种复杂现象源于多种机制,比如使用可变转录起始位点和可变的转录后加工事件。产生的转录变体能够导致合成具有不同功能结构域的蛋白质,甚至可能产生非编码RNA,它们在细胞过程中各自发挥独特作用。这些转录变体的产生并非随机发生;它具有细胞类型特异性,并随发育阶段、衰老过程或疾病发病机制而变化。这凸显了转录变体在调节基因表达方面的生物学意义及其对细胞功能的潜在影响。尽管具有生物学重要性,但转录变体的研究一直受到与检测其表达相关挑战的阻碍。这篇综述文章阐述了检测转录变体的分子技术进展。传统方法如逆转录聚合酶链反应(RT-PCR)和实时定量逆转录聚合酶链反应(RT-qPCR),可以使用针对与变体相关的独特外显子的引物轻松检测已知的转录变体。其他技术如快速扩增cDNA末端聚合酶链反应(RACE-PCR)和基于杂交的方法,包括Northern印迹法、核糖核酸酶保护分析和微阵列,也已被用于检测转录变体。然而,RNA测序(RNA-Seq)已成为识别转录变体的强大技术,尤其是那些具有先前未知序列的变体。RNA测序在转录变体检测中的有效性取决于特定的测序方法和数据分析的精度。通过了解每种实验室技术的优缺点,研究人员可以制定更有效的策略来检测mRNA转录变体。这种能力对于我们全面理解基因调控以及转录多样性在各种生物学背景下的意义至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2751/11942493/6e31a9bcb724/genes-16-00343-g001.jpg

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