paper-with-me

홈 › Papers

Geometry of Gene Regulatory Dynamics

2021-05-28 · David A. Rand, Archishman Raju, Meritxell Saez, Francis Corson, Eric D. Siggia

Embryonic development leads to the reproducible and ordered appearance of complexity from egg to adult. The successive differentiation of different cell types, that elaborates this complexity, result from the activity of gene networks and was likened by Waddington to a flow through a landscape in which valleys represent alternative fates. Geometric methods allow the formal representation of such landscapes and codify the types of behaviors that result from systems of differential equations. Results from Smale and coworkers imply that systems encompassing gene network models can be represented as potential gradients with a Riemann metric, justifying the Waddington metaphor. Here, we extend this representation to include parameter dependence and enumerate all 3-way cellular decisions realisable by tuning at most two parameters, which can be generalized to include spatial coordinates in a tissue. All diagrams of cell states vs model parameters are thereby enumerated. We unify a number of standard models for spatial pattern formation by expressing them in potential form. Turing systems appear non-potential yet in suitable variables the dynamics are low dimensional, potential, and a time independent embedding recovers the biological variables. Lateral inhibition is described by a saddle point with many unstable directions. A model for the patterning of the Drosophila eye appears as relaxation in a bistable potential. Geometric reasoning provides intuitive dynamic models for development that are well adapted to fit time-lapse data.

📄 PDF Abstract BibTeX arXiv:2105.13722

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

A computational scheme connecting gene regulatory network dynamics with heterogeneous stem cell regeneration

2024-04-17 · Yakun Li, Xiyin Liang, Jinzhi Lei

Stem cell regeneration is a vital biological process in self-renewing tissues, governing development and tissue homeostasis. Gene regulatory network dynamics are pivotal in controlling stem cell regeneration and cell typ…

An Artificial Chemistry Implementation of a Gene Regulatory Network

2022-09-09 · Iliya Miralavy, Wolfgang Banzhaf

Gene Regulatory Networks are networks of interactions in biological organisms responsible for determining the production levels of proteins and peptides. Proteins are workers of a cell factory, and their production defin…

Fluid Dynamics in Heart Development: Effects of Hematocrit and Trabeculation

2016-10-24

Recent \emph{in vivo} experiments have illustrated the importance of understanding the hemodynamics of heart morphogenesis. In particular, ventricular trabeculation is governed by a delicate interaction between hemodynam…

A scalable gene network model of regulatory dynamics in single cells

2025-03-25 · Paul Bertin, Joseph D. Viviano, Alejandro Tejada-Lapuerta, Weixu Wang 외

Single-cell data provide high-dimensional measurements of the transcriptional states of cells, but extracting insights into the regulatory functions of genes, particularly identifying transcriptional mechanisms affected …

WENDY: Covariance Dynamics Based Gene Regulatory Network Inference

2024-06-17 · Yue Wang, Peng Zheng, Yu-Chen Cheng, Zikun Wang 외

Determining gene regulatory network (GRN) structure is a central problem in biology, with a variety of inference methods available for different types of data. For a widely prevalent and challenging use case, namely sing…