Uppalapati Ananya, Wang Timothy, Nguyen Lena H
Department of Neuroscience, School of Behavioral and Brain Sciences, The University of Texas at Dallas, Richardson, TX, 75080, USA.
BMC Neurosci. 2025 Feb 18;26(1):12. doi: 10.1186/s12868-025-00934-y.
Real-time quantitative PCR (RT-qPCR) is a widely used method to investigate gene expression in neuroscience studies. Accurate relative quantification of RT-qPCR requires the selection of reference genes that are stably expressed across the experimental conditions and tissues of interest. While RT-qPCR is often performed to investigate gene expression changes during neurodevelopment, few studies have examined the expression stability of commonly used reference genes in the developing mouse cortex.
Here, we evaluated the stability of five housekeeping genes, Actb, Gapdh, B2m, Rpl13a, and Hprt, in cortical tissue from mice at embryonic day 15 to postnatal day 0 to identify optimal reference genes with stable expression during late corticogenesis. The expression stability was assessed using five computational algorithms: BestKeeper, geNorm, NormFinder, DeltaCt, and RefFinder. Our results showed that B2m, Gapdh, and Hprt, or a combination of B2m/Gapdh and B2m/Hprt, were the most stably expressed genes or gene pairs. In contrast, Actb and Rpl13a were the least stably expressed.
This study identifies B2m, Gapdh, and Hprt as suitable reference genes for relative quantification in RT-qPCR-based cortical development studies spanning the period of embryonic day 15 to postnatal day 0.
实时定量聚合酶链反应(RT-qPCR)是神经科学研究中广泛用于研究基因表达的方法。RT-qPCR的准确相对定量需要选择在感兴趣的实验条件和组织中稳定表达的参考基因。虽然RT-qPCR常用于研究神经发育过程中的基因表达变化,但很少有研究检测常用参考基因在发育中小鼠皮质中的表达稳定性。
在此,我们评估了五个管家基因Actb、Gapdh、B2m、Rpl13a和Hprt在胚胎第15天至出生后第0天小鼠皮质组织中的稳定性,以鉴定在皮质发生后期具有稳定表达的最佳参考基因。使用五种计算算法评估表达稳定性:BestKeeper、geNorm、NormFinder、DeltaCt和RefFinder。我们的结果表明,B2m、Gapdh和Hprt,或B2m/Gapdh和B2m/Hprt的组合,是表达最稳定的基因或基因对。相比之下,Actb和Rpl13a的表达最不稳定。
本研究确定B2m、Gapdh和Hprt为在基于RT-qPCR的从胚胎第15天到出生后第0天的皮质发育研究中进行相对定量的合适参考基因。