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Molecular imaging of gene expression in living subjects by spliceosome-mediated RNA trans-splicing

机译:剪接体介导的RNA转拼技术在活体受试者中表达基因的分子成像

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摘要

Spliceosome-mediated RNA trans-splicing (SMaRT) provides an effective means to reprogram mRNAs and the proteins they encode. SMaRT technology has a broad range of applications, including RNA repair and molecular imaging, each governed by the nature of the sequences delivered by the pre-trans-splicing molecule. Here, we show the ability of SMaRT to optically image the expression of an exogenous gene at the level of pre-mRNA splicing in cells and living animals. Because of the modular design of pre-trans-splicing molecules, there is great potential to employ SMaRT to image the expression of any arbitrary gene of interest in living subjects. In this report, we describe a model system that demonstrates the feasibility of imaging gene expression by transsplicing in small animals. This represents a previously undescribed approach to molecular imaging of mRNA levels in living subjects.
机译:剪接体介导的RNA转拼(SMaRT)提供了重新编程mRNA及其编码的蛋白的有效方法。 SMaRT技术具有广泛的应用,包括RNA修复和分子成像,每种应用均受转拼前分子所传递序列的性质支配。在这里,我们展示了SMaRT在细胞和活体动物中,在pre-mRNA剪接水平上光学成像外源基因表达的能力。由于预转拼分子的模块化设计,在利用SMaRT成像活体受试者中任何感兴趣的任意基因的表达方面具有很大的潜力。在这份报告中,我们描述了一个模型系统,该模型系统演示了通过在小动物中转录来成像基因表达的可行性。这代表了先前未描述的在活体受试者中对mRNA水平进行分子成像的方法。

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