Dai Yongguo, Kou Hao, Guo Xiaoling, Gong Zheng, Liu Heze, Liu Yi, Wang Hui, Guo Yu
Department of Pharmacology, Wuhan University School of Basic Medical Sciences, Wuhan, 430071, Hubei Province, People's Republic of China; Hubei Provincial Key Laboratory of Developmentally Originated Disease, Wuhan, 430071, Hubei Province, People's Republic of China.
Hubei Provincial Key Laboratory of Developmentally Originated Disease, Wuhan, 430071, Hubei Province, People's Republic of China; Department of Pharmacy, Zhongnan Hospital of Wuhan University, Wuhan, 430071, Hubei Province, People's Republic of China.
Reprod Toxicol. 2021 Oct;105:211-220. doi: 10.1016/j.reprotox.2021.09.009. Epub 2021 Sep 16.
The choice of reference gene is crucial for quantitative reverse transcriptase-polymerase chain reaction (RT-qPCR) assay. To screen and determine the suitable reference genes in fetal rat pancreas, we selected eight candidate reference genes (Gapdh, Actb, Rn18 s, B2m, Rpl13a, Tbp, Ywhaz and Ubc), and evaluated the constancy of gene expression from fetal rat pancreases in non-pathological situation and prenatal dexamethasone exposure (PDE) model, using four algorithms: GeNorm, NormFinder, Bestkeeper and Comparative ΔCt method. In addition, the alteration of mRNA levels of pancreatic insulin was compared between control and PDE groups to validate the reliability of selected reference genes for data normalization of RT-qPCR. The comprehensive ranking of reference genes under physiological condition was as follow: Gapdh > Actb > Ywhaz > Ubc > Rn18s > Rpl13a > B2m > Tbp (female); Actb > Ywhaz > Gapdh > Ubc > B2m > Rpl13a > Rn18 s | Tbp (male). The top ranking reference genes were also stably expressed in PDE fetal pancreas. The best reference gene combinations are: Ywhaz+Actb for female and Ywhaz+Gapdh for male fetal rat pancreas, respectively. Compared with low ranking or single reference gene, the change trend of insulin mRNA normalized by the best reference gene combination between control and PDE groups was more significant and consistent with that of serum insulin level. In conclusion, our results provided the optimal combination of stable reference genes for RT-qPCR assay in pancreatic developmental toxicity study.
内参基因的选择对于定量逆转录聚合酶链反应(RT-qPCR)检测至关重要。为了筛选和确定胎鼠胰腺中合适的内参基因,我们选择了八个候选内参基因(Gapdh、Actb、Rn18 s、B2m、Rpl13a、Tbp、Ywhaz和Ubc),并使用四种算法(GeNorm、NormFinder、Bestkeeper和比较ΔCt法)评估了非病理状态下和产前地塞米松暴露(PDE)模型中胎鼠胰腺基因表达的稳定性。此外,比较了对照组和PDE组之间胰腺胰岛素mRNA水平的变化,以验证所选内参基因用于RT-qPCR数据标准化的可靠性。生理条件下内参基因的综合排名如下:Gapdh > Actb > Ywhaz > Ubc > Rn18s > Rpl13a > B2m > Tbp(雌性);Actb > Ywhaz > Gapdh > Ubc > B2m > Rpl13a > Rn18 s | Tbp(雄性)。排名靠前的内参基因在PDE胎鼠胰腺中也稳定表达。最佳的内参基因组合分别是:雌性胎鼠胰腺为Ywhaz+Actb,雄性胎鼠胰腺为Ywhaz+Gapdh。与排名靠后的或单一内参基因相比,用最佳内参基因组合标准化的胰岛素mRNA在对照组和PDE组之间的变化趋势更显著,且与血清胰岛素水平的变化趋势一致。总之,我们的结果为胰腺发育毒性研究中的RT-qPCR检测提供了稳定内参基因的最佳组合。