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Efficient in situ detection of mRNAs using the Chlorella virus DNA ligase for padlock probe ligation

机译:使用小球藻病毒DNA连接酶进行挂锁探针连接的高效mRNA原位检测

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摘要

Padlock probes are single-stranded DNA molecules that are circularized upon hybridization to their target sequence by a DNA ligase. In the following, the circulated padlock probes are amplified and detected with fluorescently labeled probes complementary to the amplification product. The hallmark of padlock probe assays is a high detection specificity gained by the ligation reaction. Concomitantly, the ligation reaction is the largest drawback for a quantitative in situ detection of mRNAs due to the low affinities of common DNA or RNA ligases to RNA–DNA duplex strands. Therefore, current protocols require that mRNAs be reverse transcribed to DNA before detection with padlock probes. Recently, it was found that the DNA ligase from Paramecium bursaria Chlorella virus 1 (PBCV-1) is able to efficiently ligate RNA-splinted DNA. Hence, we designed a padlock probe assay for direct in situ detection of mRNAs using the PBCV-1 DNA ligase. Experimental single-cell data were used to optimize and characterize the efficiency of mRNA detection with padlock probes. Our results demonstrate that the PBCV-1 DNA ligase overcomes the efficiency limitation of current protocols for direct in situ mRNA detection, making the PBCV-1 DNA ligase an attractive tool to simplify in situ ligation sequencing applications.
机译:挂锁探针是单链DNA分子,通过DNA连接酶杂交到其靶序列后被环化。在下文中,循环的挂锁探针被扩增并用与扩增产物互补的荧光标记探针进行检测。挂锁探针测定法的标志是通过连接反应获得的高检测特异性。同时,由于常见的DNA或RNA连接酶与RNA-DNA双链的亲和力低,连接反应是mRNA原位定量检测的最大弊端。因此,当前方案要求在使用挂锁探针检测之前将mRNA逆转录为DNA。最近,发现来自草履虫小球藻小球藻病毒1(PBCV-1)的DNA连接酶能够有效地连接夹有RNA的DNA。因此,我们设计了一种用于使用PBCV-1 DNA连接酶直接原位检测mRNA的挂锁探针测定法。实验性单细胞数据用于优化和表征锁式探针检测mRNA的效率。我们的结果表明,PBCV-1 DNA连接酶克服了直接进行原位mRNA检测的当前方案的效率限制,使PBCV-1 DNA连接酶成为简化原位连接测序应用的有吸引力的工具。

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