Gene regulatory network reconstruction using single-cell RNA sequencing of barcoded genotypes in diverse environments
Gene regulatory network reconstruction using single-cell RNA sequencing of barcoded genotypes in diverse environments
Abstract Understanding how gene expression programs are controlled requires identifying regulatory relationships between transcription factors and target genes. Gene regulatory networks are typically constructed from gene expression data acquired following genetic perturbation or environmental stimulus. Single-cell RNA sequencing (scRNAseq) captures the gene expression state of thousands of individual cells in a single experiment, offering advantages in combinatorial experimental design, large numbers of independent measurements, and accessing the interaction between the cell cycle and environmental responses that is hidden by population-level analysis of gene expression. To leverage these advantages, we developed a method for transcriptionally barcoding gene deletion mutants and performing scRNAseq in budding yeast (Saccharomyces cerevisiae). We pooled diverse genotypes in 11 different environmental conditions and determined their expression state by sequencing 38,285 individual cells. We developed, and benchmarked, a framework for learning gene regulatory networks from scRNAseq data that incorporates multitask learning and constructed a global gene regulatory network comprising 12,018 interactions. Our study establishes a general approach to gene regulatory network reconstruction from scRNAseq data that can be employed in any organism.
Castro Dayanne M、Gresham David、Bonneau Richard、Saldi Giuseppe-Antonio、Jackson Christopher A
Department of BiologyCenter For Genomics and Systems Biology||Department of BiologyCenter For Genomics and Systems Biology||Department of Biology||Courant Institute of Mathematical Sciences, Computer Science Department, New York University||Center For Data Science||Flatiron Institute, Center for Computational Biology, Simons FoundationDepartment of BiologyCenter For Genomics and Systems Biology||Department of Biology
分子生物学遗传学细胞生物学
Castro Dayanne M,Gresham David,Bonneau Richard,Saldi Giuseppe-Antonio,Jackson Christopher A.Gene regulatory network reconstruction using single-cell RNA sequencing of barcoded genotypes in diverse environments[EB/OL].(2025-03-28)[2025-08-02].https://www.biorxiv.org/content/10.1101/581678.点此复制
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