Javascript must be enabled to continue!
Computational reconstruction of hierarchical cis-regulatory networks reveals synergistic transcription control and disease-associated rewiring
View through CrossRef
Abstract
Gene regulation emerges from coordinated interactions among dispersed cis-regulatory elements, yet how these elements integrate into functional regulatory networks and collectively regulate gene transcription remains poorly understood. Here, we present ORIGAMI, a multi-omics, gene-centric deep learning framework that reconstructs functional cis-regulatory networks constrained by transcriptional output. ORIGAMI formulates cis-regulatory modeling as a latent graph inference task, which integrates DNA sequence, epigenomic signals, and three-dimensional chromatin priors to infer denoised regulatory graphs that capture functional interactions rather than structural proximity alone. The inferred regulatory graphs exhibit distinct topological regimes, where hierarchical and modular organization encodes cell-state-specific functional demands and enables synergistic transcriptional control. Furthermore, we show that these regulatory architectures undergo measurable state-dependent rewiring across disease contexts. Finally, ORIGAMI accurately predicts the transcriptional consequences of both cis- and trans-regulatory perturbations and links the rearrangement of regulatory architecture to perturbation response. Together, ORIGAMI advances a network-based view of gene regulation and establishes a foundation for virtual cell modeling of regulatory dynamics.
Title: Computational reconstruction of hierarchical cis-regulatory networks reveals synergistic transcription control and disease-associated rewiring
Description:
Abstract
Gene regulation emerges from coordinated interactions among dispersed cis-regulatory elements, yet how these elements integrate into functional regulatory networks and collectively regulate gene transcription remains poorly understood.
Here, we present ORIGAMI, a multi-omics, gene-centric deep learning framework that reconstructs functional cis-regulatory networks constrained by transcriptional output.
ORIGAMI formulates cis-regulatory modeling as a latent graph inference task, which integrates DNA sequence, epigenomic signals, and three-dimensional chromatin priors to infer denoised regulatory graphs that capture functional interactions rather than structural proximity alone.
The inferred regulatory graphs exhibit distinct topological regimes, where hierarchical and modular organization encodes cell-state-specific functional demands and enables synergistic transcriptional control.
Furthermore, we show that these regulatory architectures undergo measurable state-dependent rewiring across disease contexts.
Finally, ORIGAMI accurately predicts the transcriptional consequences of both cis- and trans-regulatory perturbations and links the rearrangement of regulatory architecture to perturbation response.
Together, ORIGAMI advances a network-based view of gene regulation and establishes a foundation for virtual cell modeling of regulatory dynamics.
Related Results
Abstract IA3: Regulatory networks in onco-lncRNAomics: Cis-regulation and non-conservation
Abstract IA3: Regulatory networks in onco-lncRNAomics: Cis-regulation and non-conservation
Abstract
Global studies of the transcriptome reveal that approximately half of human transcriptional units (genes) encode solely non-protein-coding RNAs (ncRNAs), wh...
Copper indium sulfide colloidal quantum dot solar cells
Copper indium sulfide colloidal quantum dot solar cells
The ubiquity of solar energy conversion technology is an exciting target which we aspire for in this century. Colloidal quantum dot (CQD) solar cells are an attractive platform, be...
Effect of local rewiring in adaptive epidemic ERDOS-RENYI random networks
Effect of local rewiring in adaptive epidemic ERDOS-RENYI random networks
Adaptive epidemic network is driven by two main processes, (1) infectionrecovery process that changes the states of the nodes, and (2) rewiring process that modifies the topology o...
Evidence for [1,5] sigmatropic rearrangements of CLA in heated oils
Evidence for [1,5] sigmatropic rearrangements of CLA in heated oils
AbstractLinoleic acid was heated at 200°C under helium. Analysis of degradation products by GC on a long polar open tubular capillary column showed the presence of CLA isomers. The...
Extreme restructuring of
cis
-regulatory regions controlling a deeply conserved plant stem cell regulator
Extreme restructuring of
cis
-regulatory regions controlling a deeply conserved plant stem cell regulator
Abstract
A striking paradox is that genes with conserved protein sequence, function and expression pattern over deep time often exhibit extremely...
Group-based rewiring rules of binary opinion competition dynamics
Group-based rewiring rules of binary opinion competition dynamics
AbstractThe dynamics of competing opinions on networks has attracted multi-disciplinary research. Most modelling approaches assume uniform or heterogeneous behaviour among all indi...
Farmers’ Demand for Climate Information Services: A Systematic Review
Farmers’ Demand for Climate Information Services: A Systematic Review
The importance of climate information services (CIS) for farm decision-making is known worldwide. Its use is widely recommended by academics, governments, and development partners,...
Stereoselective Preparation of Six Diastereomeric Quatercyclopropanes from Bicyclopropylidene and Some Derivatives
Stereoselective Preparation of Six Diastereomeric Quatercyclopropanes from Bicyclopropylidene and Some Derivatives
AbstractDiastereomeric meso‐ and d,l‐bis(bicyclopropylidenyl) (5) were obtained upon oxidation with oxygen of a higher‐order cuprate generated from lithiobicyclopropylidene (4) in ...

