Department of Microbiology and Immunology, Kunming Medical University, Kunming, 650500, China.
Yunnan Province Key Laboratory for Tropical Infectious Diseases, Kunming Medical University, Kunming, 650500, China.
Brain Struct Funct. 2021 Mar;226(2):313-322. doi: 10.1007/s00429-021-02230-x. Epub 2021 Feb 5.
Exploring and revealing the secret of the function of the human brain has been the dream of mankind and science. Delineating brain transcriptional regulation has been extremely challenging, but recent technological advances have facilitated a deeper investigation of molecular processes in the brain. Tracing the molecular regulatory mechanisms of different gene expression profiles in the brain is divergent and has made it possible to connect spatial and temporal variations in gene expression to distributed properties of brain structure and function. Here, we review the molecular diversity of the brain among rodents, non-human primates and humans. We also discuss the molecular mechanism of non-coding DNA/RNA at the transcriptional/post-transcriptional level based on recent technical advances to highlight an improved understanding of the complex transcriptional network in the brain. Spatiotemporal and single-cell transcriptomics have attempted to gain novel insight into the development and evolution of the brain as well as the progression of human diseases. Although it is clear that the field is developing and challenges remain to be resolved, the impressive recent progress provides a solid foundation to better understand the brain and evidence-based recommendations for the diagnosis and treatment of brain diseases.
探索和揭示人类大脑的功能一直是人类和科学的梦想。描绘大脑转录调控极具挑战性,但最近的技术进步促进了对大脑中分子过程的更深入研究。追踪大脑中不同基因表达谱的分子调控机制是不同的,这使得将基因表达的时空变化与大脑结构和功能的分布特性联系起来成为可能。在这里,我们综述了啮齿动物、非人类灵长类动物和人类大脑中的分子多样性。我们还讨论了基于最近技术进展的转录/转录后水平上非编码 DNA/RNA 的分子机制,以突出对大脑中复杂转录网络的更好理解。时空和单细胞转录组学试图深入了解大脑的发育和进化以及人类疾病的进展。尽管很明显该领域正在发展,并且仍有挑战需要解决,但令人印象深刻的最近进展为更好地理解大脑提供了坚实的基础,并为大脑疾病的诊断和治疗提供了循证建议。