肠神经系统
生物
表型
长春新碱
中枢神经系统
发病机制
神经系统
信号转导
细胞生物学
巨结肠病
疾病
基因
细胞分化
神经科学
MAPK/ERK通路
癌症研究
转录组
肠粘膜
体外
遗传学
免疫学
基因表达调控
LIM域
细胞
细胞生长
细胞信号
运动性
作者
Lifang Liu,Xixin Wang,Mingxuan Liang,Peiting Li,Cindy Yifei Yan,Bhy Chung,Kenneth Kak‐Yuen Wong,Asif Javed,Maria-Mercedes Garcia-Barcelo,Esw Ngan
摘要
Vinculin (VCL), a linker between cells and their environment, has rarely been linked to disease. This study examines the role of VCL in the development of the enteric nervous system (ENS) and its relationship to Hirschsprung disease (HSCR). Using whole-genome sequencing and in vitro assays, we identified 4 VCL mutations associated with HSCR, most causing loss of function. Neural crest-specific Vcl knock-out mice (Vcl cKO) displayed ENS defects resembling short-segment HSCR, including partial colonic aganglionosis and abnormal gut musculature. Single-cell transcriptomics revealed dysregulation of genes involved in neuronal differentiation and MAPK signaling. Spatial RNA-seq revealed reduced ENS-mesenchyme interactions in Vcl cKO mice, accompanied by significant disruption of the Pleiotrophin (PTN) pathway; Ptn knock-out mice exhibited phenotypes similar to those of Vcl cKO mice, underscoring the importance of ENS-mesenchyme crosstalk. VCL works as a hub gene crucial for cell connection and signaling pathways essential for ENS formation. VCL deficiency subtly impacts various developmental stages and neighboring cells, cumulatively leading to a phenotype similar to short-segment HSCR. This research highlights the role of VCL in maintaining cellular interactions and signaling pathways, such as MAPK and PTN, which are crucial for ENS development and may inform therapeutic targets for ENS disorders.
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