Yoo Hyunjin, La Hyeonwoo, Park Chanhyeok, Yoo Seonho, Lee Hyeonji, Song Hyuk, Do Jeong Tae, Choi Youngsok, Hong Kwonho
Department of Stem Cell and Regenerative Biotechnology, Institute of Advanced Regenerative Science, Konkuk University, Seoul, South Korea.
Front Cell Dev Biol. 2023 Jun 15;11:1176115. doi: 10.3389/fcell.2023.1176115. eCollection 2023.
Epigenetic mechanisms are mandatory for endothelial called lymphangioblasts during cardiovascular development. Dot1l-mediated gene transcription in mice is essential for the development and function of lymphatic ECs (LECs). The role of Dot1l in the development and function of blood ECs blood endothelial cells is unclear. RNA-seq datasets from Dot1l-depleted or -overexpressing BECs and LECs were used to comprehensively analyze regulatory networks of gene transcription and pathways. Dot1l depletion in BECs changed the expression of genes involved in cell-to-cell adhesion and immunity-related biological processes. Dot1l overexpression modified the expression of genes involved in different types of cell-to-cell adhesion and angiogenesis-related biological processes. Genes involved in specific tissue development-related biological pathways were altered in Dot1l-depleted BECs and LECs. Dot1l overexpression altered ion transportation-related genes in BECs and immune response regulation-related genes in LECs. Importantly, Dot1l overexpression in BECs led to the expression of genes related to the angiogenesis and increased expression of MAPK signaling pathways related was found in both Dot1l-overexpressing BECs and LECs. Therefore, our integrated analyses of transcriptomics in Dot1l-depleted and Dot1l-overexpressed ECs demonstrate the unique transcriptomic program of ECs and the differential functions of Dot1l in the regulation of gene transcription in BECs and LECs.
表观遗传机制在心血管发育过程中对于被称为淋巴管母细胞的内皮细胞而言是必不可少的。小鼠中Dot1l介导的基因转录对于淋巴管内皮细胞(LECs)的发育和功能至关重要。Dot1l在血管内皮细胞(BECs)的发育和功能中的作用尚不清楚。来自Dot1l缺失或过表达的BECs和LECs的RNA测序数据集被用于全面分析基因转录调控网络和信号通路。BECs中Dot1l的缺失改变了参与细胞间黏附以及免疫相关生物学过程的基因表达。Dot1l的过表达改变了参与不同类型细胞间黏附以及血管生成相关生物学过程的基因表达。在Dot1l缺失的BECs和LECs中,参与特定组织发育相关生物学途径的基因发生了改变。Dot1l的过表达改变了BECs中与离子运输相关的基因以及LECs中与免疫反应调节相关的基因。重要的是,BECs中Dot1l的过表达导致了与血管生成相关基因的表达,并且在Dot1l过表达的BECs和LECs中均发现丝裂原活化蛋白激酶(MAPK)信号通路的表达增加。因此,我们对Dot1l缺失和过表达的内皮细胞进行的转录组学综合分析揭示了内皮细胞独特的转录组程序以及Dot1l在调控BECs和LECs基因转录中的不同功能。