Lee A-Ram, Kim Jong-Hwan, Cho Eunsil, Kim Mirang, Park Mikyoung
Center for Functional Connectomics, Brain Science Institute, Korea Institute of Science and Technology, Seoul, South Korea.
Personalized Genomic Medicine Research Center, Korea Research Institute of Bioscience and Biotechnology, Daejeon, South Korea.
Front Mol Neurosci. 2017 Oct 16;10:331. doi: 10.3389/fnmol.2017.00331. eCollection 2017.
The dorsal and ventral regions of the hippocampus are important in cognitive and emotional processing, respectively. Various approaches have revealed the differential molecular and structural characteristics, and functional roles of the hippocampus. Recent RNA sequencing (RNA-seq) technology has enriched our understanding of the hippocampus by elucidating more detailed information on gene expression patterns. However, no RNA-seq-based study on gene profiles in the developing hippocampus has been reported. Using RNA-seq-based bioinformatic analysis in conjunction with quantitative real-time polymerase chain reaction analysis and a comparison of hybridization data obtained from the Allen Brain Atlas, we provide a thorough analysis of differentially expressed genes in the dorsal and ventral hippocampus at specific developmental ages representing the postnatally maturing hippocampus. Genes associated with particular functional pathways and marker genes for particular neurological diseases were found to be distinctively segregated within either the dorsal or ventral hippocampus at specific or at all developmental ages examined. We also report novel molecular markers enriched in the dorsal or ventral hippocampus. Taken together, this study provides insights into the molecular mechanisms underlying physiological functions linked to the dorsal or ventral hippocampus. The information provided in the study also contributes to a better understanding of brain functions and serves as a resource for future studies on the pathophysiology of dorsal and ventral hippocampal functions.
海马体的背侧和腹侧区域分别在认知和情绪处理中发挥重要作用。各种研究方法揭示了海马体不同的分子和结构特征以及功能作用。最近的RNA测序(RNA-seq)技术通过阐明基因表达模式的更详细信息,丰富了我们对海马体的认识。然而,尚未有基于RNA测序的关于发育中海马体基因谱的研究报道。通过结合基于RNA测序的生物信息学分析、定量实时聚合酶链反应分析以及与从艾伦脑图谱获得的杂交数据进行比较,我们对代表出生后成熟海马体的特定发育阶段背侧和腹侧海马体中差异表达的基因进行了全面分析。发现在特定或所有检测的发育阶段,与特定功能途径相关的基因以及特定神经疾病的标记基因在背侧或腹侧海马体中明显分离。我们还报告了在背侧或腹侧海马体中富集的新型分子标记。综上所述,本研究深入探讨了与背侧或腹侧海马体相关的生理功能背后的分子机制。该研究提供的信息也有助于更好地理解脑功能,并为未来关于背侧和腹侧海马体功能病理生理学的研究提供资源。