首页> 美国卫生研究院文献>Acta Histochemica et Cytochemica >Improvement of In Situ PCR by Optimization of PCR Cycle Number and Proteinase K Concentration: Localization of X Chromosome-Linked Phosphoglycerate Kinase-1 Gene in Mouse Reproductive Organs
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Improvement of In Situ PCR by Optimization of PCR Cycle Number and Proteinase K Concentration: Localization of X Chromosome-Linked Phosphoglycerate Kinase-1 Gene in Mouse Reproductive Organs

机译:通过优化PCR循环数和蛋白酶K浓度改进原位PCR:X染色体连锁的磷酸甘油酸激酶-1基因在小鼠生殖器官中的定位

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摘要

In situ polymerase chain reaction (in situ PCR), which can detect a few copies of genes within a cell by amplifying the target gene, was developed to better understand the biological functions of tissues. In this study, we optimized the protocol conditions for the detection of X chromosome-linked phosphoglycerate kinase-1 (pgk-1) gene in paraffin-embedded sections of mouse reproductive organs. The effects of various concentrations of proteinase K (PK) and PCR cycle numbers were examined. To label the amplified DNA, we used digoxigenin-dUTP (Dig), Cy-3-dUTP (Cy-3), or FluorX-dCTP (FluorX). The optimal concentration of PK was 50 µg/ml for the ovary and 10 µg/ml for the testis. Ten PCR cycles were optimal for Dig and 25 cycles were optimal for FluorX and Cy-3 in the ovary and testis. The signal-to-noise ratio of FluorX and Cy-3 for ovarian tissue was better than that of Dig. Using the above conditions, we detected 1–4 and 1–2 spots of pgk-1 in the nuclei of granulosa and germ cells, respectively. Our results indicate that in situ PCR is useful for detecting a specific gene in paraffin-embedded sections under optimized conditions of both PCR cycle number and PK concentration.
机译:为了更好地了解组织的生物学功能,人们开发了原位聚合酶链式反应(原位PCR),该反应可以通过扩增靶基因来检测细胞内基因的几个拷贝。在这项研究中,我们优化了检测小鼠生殖器官石蜡包埋切片中X染色体连锁的磷酸甘油酸激酶-1(pgk-1)基因的协议条件。检查了各种浓度的蛋白酶K(PK)和PCR循环数的影响。为了标记扩增的DNA,我们使用了地高辛配基-dUTP(Dig),Cy-3-dUTP(Cy-3)或FluorX-dCTP(FluorX)。卵巢的最佳PK浓度为50 µg / ml,睾丸的最佳PK浓度为10 µg / ml。对于Dig,十个PCR循环最佳,对于卵巢和睾丸中的FluorX和Cy-3,最佳25个循环。 FluorX和Cy-3对卵巢组织的信噪比好于Dig。使用上述条件,我们分别在颗粒细胞和生殖细胞的核中检测到pgk-1的1-4和1-2点。我们的结果表明,在优化的PCR循环数和PK浓度条件下,原位PCR可用于检测石蜡包埋切片中的特定基因。

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