| Literature DB >> 33712552 |
Lin Yang1, Zihao Su1, Ziwu Wang1, Zhenmeiyu Li1, Zicong Shang1, Heng Du1, Guoping Liu1, Dashi Qi1, Zhengang Yang1, Zhejun Xu2, Zhuangzhi Zhang3.
Abstract
The striatum is structurally highly diverse, and its organ functionality critically depends on normal embryonic development. Although several studies have been conducted on the gene functional changes that occur during striatal development, a system-wide analysis of the underlying molecular changes is lacking. Here, we present a comprehensive transcriptome profile that allows us to explore the trajectory of striatal development and identify the correlation between the striatal development and Huntington's disease (HD). Furthermore, we applied an integrative transcriptomic profiling approach based on machine learning to systematically map a global landscape of 277 transcription factor (TF) networks. Most of these TF networks are linked to biological processes, and some unannotated genes provide information about the corresponding mechanisms. For example, we found that the Meis2 and Six3 were crucial for the survival of striatal neurons, which were verified using conditional knockout (CKO) mice. Finally, we used RNA-Seq to speculate their downstream targets.Entities:
Year: 2021 PMID: 33712552 PMCID: PMC7955055 DOI: 10.1038/s41419-021-03552-8
Source DB: PubMed Journal: Cell Death Dis Impact factor: 8.469