Back to Search Start Over

MIRA: joint regulatory modeling of multimodal expression and chromatin accessibility in single cells

Authors :
Allen W. Lynch
Christina V. Theodoris
Henry Long
Myles Brown
X. Shirley Liu
Clifford A. Meyer
Source :
Nat Methods
Publication Year :
2022
Publisher :
Springer Science and Business Media LLC, 2022.

Abstract

Rigorously comparing gene expression and chromatin accessibility in the same single cells could illuminate the logic of how coupling or decoupling of these mechanisms regulates fate commitment. Here, we present MIRA: Probabilistic Multimodal Models for Integrated Regulatory Analysis, a comprehensive methodology that systematically contrasts transcription and accessibility to infer the regulatory circuitry driving cells along developmental trajectories. MIRA leverages topic modeling of cell states and regulatory potential modeling of individual gene loci. MIRA thereby represents cell states in an efficient and interpretable latent space, infers high fidelity lineage trees, determines key regulators of fate decisions at branch points, and exposes the variable influence of local accessibility on transcription at distinct loci. Applied to epidermal maintenance differentiation and embryonic brain development from two different multimodal platforms, MIRA revealed that early developmental genes were tightly regulated by local chromatin landscape whereas terminal fate genes were titrated without requiring extensive chromatin remodeling.

Details

ISSN :
15487105 and 15487091
Volume :
19
Database :
OpenAIRE
Journal :
Nature Methods
Accession number :
edsair.doi.dedup.....4900c6bb535b835a850736a9fd09e1e3