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使用短发夹DNA的改良杂交链式反应

Modified Hybridization Chain Reaction Using Short Hairpin DNAs.

作者信息

Tsuneoka Yousuke, Funato Hiromasa

机构信息

Department of Anatomy, Faculty of Medicine, Toho University, Tokyo, Japan.

International Institutes for Integrative Sleep Medicine (WPI-IIIS), University of Tsukuba, Ibaraki, Japan.

出版信息

Front Mol Neurosci. 2020 May 12;13:75. doi: 10.3389/fnmol.2020.00075. eCollection 2020.

Abstract

The visualization of multiple gene expressions in well-preserved tissues is crucial for the elucidation of physiological and pathological processes. hybridization chain reaction (HCR) is a method to visualize specific mRNAs in diverse organisms by applying a HCR that is an isothermal enzyme-free nucleotide polymerization method using hairpin DNAs. Although HCR is a versatile method, this method is not widely used by researchers because of their higher cost than conventional hybridization (ISH). Here, we redesigned hairpin DNAs so that their lengths were half the length of commonly used hairpin DNAs. We also optimized the conjugated fluorophores and linkers. Modified HCR showed sufficient fluorescent signals to detect various mRNAs such as , , , , , and in mouse neural tissues with a high signal-to-noise ratio. The sensitivity of modified HCR in detecting the mRNA was better than that of fluorescent ISH using tyramide signal amplification. Notably, the modified HCR does not require proteinase K treatment so that it enables the preservation of morphological structures and antigenicity. The modified HCR simultaneously detected the distributions of c-Fos immunoreactivity and mRNA, and detected multiple mRNAs with a high signal-noise ratio at subcellular resolution in mouse brains. These results suggest that the modified HCR using short hairpin DNAs is cost-effective and useful for the visualization of multiple mRNAs and proteins.

摘要

在保存完好的组织中可视化多种基因表达对于阐明生理和病理过程至关重要。杂交链式反应(HCR)是一种通过应用HCR在多种生物体中可视化特定mRNA的方法,HCR是一种使用发夹DNA的等温无酶核苷酸聚合方法。尽管HCR是一种通用方法,但由于其成本高于传统杂交(ISH),该方法并未被研究人员广泛使用。在这里,我们重新设计了发夹DNA,使其长度为常用发夹DNA长度的一半。我们还优化了共轭荧光团和连接子。改良的HCR显示出足够的荧光信号,能够以高信噪比在小鼠神经组织中检测各种mRNA,如 、 、 、 、 和 。改良的HCR在检测 mRNA方面的灵敏度优于使用酪胺信号放大的荧光ISH。值得注意的是,改良的HCR不需要蛋白酶K处理,因此能够保留形态结构和抗原性。改良的HCR同时检测了c-Fos免疫反应性和 mRNA的分布,并在小鼠大脑中以亚细胞分辨率高信噪比检测了多种mRNA。这些结果表明,使用短发夹DNA的改良HCR具有成本效益,可用于多种mRNA和蛋白质的可视化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66bf/7235299/93d43ecfadf4/fnmol-13-00075-g0001.jpg

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