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PMF-GRN: a Variational Inference Approach to Single-cell Gene Regulatory Network Inference Using Probabilistic Matrix Factorization

Overview
Journal Genome Biol
Specialties Biology
Genetics
Date 2024 Apr 8
PMID 38589899
Authors
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Abstract

Inferring gene regulatory networks (GRNs) from single-cell data is challenging due to heuristic limitations. Existing methods also lack estimates of uncertainty. Here we present Probabilistic Matrix Factorization for Gene Regulatory Network Inference (PMF-GRN). Using single-cell expression data, PMF-GRN infers latent factors capturing transcription factor activity and regulatory relationships. Using variational inference allows hyperparameter search for principled model selection and direct comparison to other generative models. We extensively test and benchmark our method using real single-cell datasets and synthetic data. We show that PMF-GRN infers GRNs more accurately than current state-of-the-art single-cell GRN inference methods, offering well-calibrated uncertainty estimates.

Citing Articles

A single-cell multimodal view on gene regulatory network inference from transcriptomics and chromatin accessibility data.

Loers J, Vermeirssen V Brief Bioinform. 2024; 25(5).

PMID: 39207727 PMC: 11359808. DOI: 10.1093/bib/bbae382.


PMF-GRN: a variational inference approach to single-cell gene regulatory network inference using probabilistic matrix factorization.

Skok Gibbs C, Mahmood O, Bonneau R, Cho K Genome Biol. 2024; 25(1):88.

PMID: 38589899 PMC: 11003171. DOI: 10.1186/s13059-024-03226-6.

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