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Validation strategies for antibodies targeting modified ribonucleotides

机译:靶向修饰核糖核苷酸的抗体验证策略

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摘要

Chemical modifications are found on almost all RNAs and affect their coding and noncoding functions. The identification of m6A on mRNA and its important role in gene regulation stimulated the field to investigate whether additional modifications are present on mRNAs. Indeed, modifications including m1A, m5C, m7G, 2′-OMe, and Ψ were detected. However, since their abundances are low and tools used for their corroboration are often not well characterized, their physiological relevance remains largely elusive. Antibodies targeting modified nucleotides are often used but have limitations such as low affinity or specificity. Moreover, they are not always well characterized and due to the low abundance of the modification, particularly on mRNAs, generated data sets might resemble noise rather than specific modification patterns. Therefore, it is critical that the affinity and specificity is rigorously tested using complementary approaches. Here, we provide an experimental toolbox that allows for testing antibody performance prior to their use.
机译:几乎所有 RNA 上都发现了化学修饰,并影响它们的编码和非编码功能。mRNA 上 m6A 的鉴定及其在基因调控中的重要作用刺激了该领域研究 mRNA 上是否存在其他修饰。事实上,检测到包括 m1A 、 m5C 、 m7G 、 2′-OMe 和 Ψ 在内的修饰。然而,由于它们的丰度较低,并且用于证实它们的工具通常没有得到很好的表征,因此它们的生理相关性在很大程度上仍然难以捉摸。经常使用靶向修饰核苷酸的抗体,但存在亲和力或特异性低等局限性。此外,它们并不总是得到很好的表征,并且由于修饰的丰度较低,尤其是在 mRNA 上,生成的数据集可能类似于噪声而不是特定的修饰模式。因此,使用互补方法严格测试亲和力和特异性至关重要。在这里,我们提供了一个实验工具箱,允许在使用抗体之前对其进行性能测试。

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