形态发生剂
生物
基因调控网络
调节器
信号转导
前馈
细胞命运测定
神经科学
系统生物学
细胞生物学
计算生物学
细胞信号
胚胎干细胞
基因表达调控
网络拓扑
电子线路
计算机科学
合成生物学
串扰
信号(编程语言)
网络分析
发育生物学
细胞内
作者
Miri Adler,Ruslan M. Medzhitov
标识
DOI:10.1073/pnas.2538060123
摘要
Morphogen signaling pathways orchestrate cell fate and tissue patterning during embryo development through intricate intercellular communication. While much is known about the molecular components of these pathways, the underlying regulatory logic shaping their integration remains unclear. Here, we develop a computational framework to uncover higher-order network structures, hypermotifs , that link gene regulatory circuits within and between cells via morphogen signaling. Applying this framework to single-cell RNA sequencing data from human intestinal development, we identify recurrent hypermotif topologies that mediate communication between epithelial and fibroblast populations. These cell-cell hypermotif circuits involve feedback and feedforward loops embedded within signaling pathways. Dynamical modeling reveals that such circuits can generate emergent behaviors, including oscillatory and antagonistic responses. Our results highlight hypermotifs as key design principles in developmental regulatory networks, providing a systems-level understanding of morphogen signal integration across cell types.
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