paper-with-me

Papers

A scalable gene network model of regulatory dynamics in single cells

2025-03-25 · Paul Bertin, Joseph D. Viviano, Alejandro Tejada-Lapuerta, Weixu Wang, Stefan Bauer, Fabian J. Theis, Yoshua Bengio

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 by biological perturbations, remains a challenge. Many perturbations induce compensatory cellular responses, making it difficult to distinguish direct from indirect effects on gene regulation. Modeling how gene regulatory functions shape the temporal dynamics of these responses is key to improving our understanding of biological perturbations. Dynamical models based on differential equations offer a principled way to capture transcriptional dynamics, but their application to single-cell data has been hindered by computational constraints, stochasticity, sparsity, and noise. Existing methods either rely on low-dimensional representations or make strong simplifying assumptions, limiting their ability to model transcriptional dynamics at scale. We introduce a Functional and Learnable model of Cell dynamicS, FLeCS, that incorporates gene network structure into coupled differential equations to model gene regulatory functions. Given (pseudo)time-series single-cell data, FLeCS accurately infers cell dynamics at scale, provides improved functional insights into transcriptional mechanisms perturbed by gene knockouts, both in myeloid differentiation and K562 Perturb-seq experiments, and simulates single-cell trajectories of A549 cells following small-molecule perturbations.

📄 PDF Abstract BibTeX arXiv:2503.20027

Code (1)

bertinus/flecs 공식 구현 pytorch

Similar Papers 제목 키워드 기반

Single-cell gene regulatory network analysis for mixed cell populations with applications to COVID-19 single cell data

2022-05-23 · Junjie Tang, Changhu Wang, Feiyi Xiao, Ruibin Xi

Gene regulatory network (GRN) refers to the complex network formed by regulatory interactions between genes in living cells. In this paper, we consider inferring GRNs in single cells based on single cell RNA sequencing (…

Variational Inference

How Criticality of Gene Regulatory Networks Affects the Resulting Morphogenesis under Genetic Perturbations

2018-01-26

Whereas the relationship between criticality of gene regulatory networks (GRNs) and dynamics of GRNs at a single cell level has been vigorously studied, the relationship between the criticality of GRNs and system propert…

Inferring Gene Regulatory Neural Networks for Bacterial Decision Making in Biofilms

2023-01-10 · Samitha Somathilaka, Daniel P. Martins, Xu Li, Yusong Li 외

Bacterial cells are sensitive to a range of external signals used to learn the environment. These incoming external signals are then processed using a Gene Regulatory Network (GRN), exhibiting similarities to modern comp…

Decision MakingGraph Neural Network

Learning biophysical models of gene regulation with probability flow matching

2026-04-27 · Suryanarayana Maddu, Victor Chardès, Michael J. Shelley arxiv

Cellular differentiation is governed by gene regulatory networks, the high-dimensional stochastic biochemical systems that determine the transcriptional landscape and mediate cellular responses to signals and perturbatio…

Stochastic dynamics of two-compartment cell proliferation models with regulatory mechanisms for hematopoiesis

2024-04-29 · Ren-Yi Wang, Marek Kimmel, Guodong Pang

We present an asymptotic analysis of a stochastic two-compartmental cell division system with regulatory mechanisms inspired by Getto et al. (2013). The hematopoietic system is modeled as a two-compartment system, where …