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Combined fluorescent in situ hybridization for detection of microRNAs and immunofluorescent labeling for cell-type markers

机译:结合荧光原位杂交检测microRNA和免疫荧光标记细胞类型标记

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摘要

Identification of the cell type of origin for normal or aberrant gene expression is critical for many studies, and poses a significant problem for some regulatory RNAs such as microRNAs. MicroRNAs are small non-coding RNAs that regulate cellular function by targeting specific mRNAs and reducing the level of their protein product. Aberrant expression of miRNAs in cell-types where they are not normally expressed occurs in several disease conditions. Therefore, it is important to determine not only the expression level of microRNAs, but also where they are expressed. Here we describe a detailed method for fluorescent in situ hybridization (FISH) combined with immunofluorescent labeling for cell-type markers in formalin fixed paraffin embedded (FFPE) sections along with modifications required to adapt the protocol for primary neurons grown in culture. We have combined the specificity and stability of locked nucleic acid (LNA) probes with tyramide signal amplification. To prevent loss of small RNA species, we performed post-fixation with ethylcarbodiimide (EDC). Additionally by omitting protease digestion and using only high temperature with sodium citrate buffer for FFPE sections, we were able to perform immunolabeling for proteins concurrently with in situ hybridization without compromising efficacy of either procedure.
机译:鉴定正常或异常基因表达的细胞来源类型对于许多研究至关重要,并且对某些调节性RNA(例如microRNA)提出了重大问题。 MicroRNA是小的非编码RNA,可通过靶向特定mRNA并降低其蛋白质产物水平来调节细胞功能。在几种疾病条件下,miRNA在通常不表达的细胞类型中异常表达。因此,重要的是不仅要确定微小RNA的表达水平,而且要确定它们的表达位置。在这里,我们描述了荧光原位杂交(FISH)结合福尔马林固定石蜡包埋(FFPE)部分中的细胞类型标记物进行免疫荧光标记的详细方法,以及适应于培养原代神经元的协议所需的修改。我们将酪氨酸酰胺信号放大技术与锁定核酸(LNA)探针的特异性和稳定性相结合。为了防止小RNA种类的丢失,我们用乙基碳二亚胺(EDC)进行了后固定。此外,通过省略蛋白酶消化并仅在高温下将柠檬酸钠缓冲液用于FFPE切片,我们能够在不影响任何一种方法功效的情况下,在原位杂交的同时对蛋白质进行免疫标记。

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