Study / S43M6QJWB2025-09-30
Programming human cell type-specific gene expression via an atlas of AI-designed enhancers
Sebastian M. Castillo-Hair, Christopher H. Yin, Leah VandenBosch, Timothy J. Cherry, Wouter Meuleman et al.
About this study
Differentially active enhancers are key drivers of cell type specific gene expression. Active enhancers are found in open chromatin, which can be mapped at genome scale across tissue and cell types. Though incompletely understood, the relationship between chromatin accessibility and enhancer activity has been exploited to identify, model, and even design functional enhancers for selected cell types, but to what extent this design strategy can generalize across human cell and tissue types remains unclear. Here, we trained deep neural networks on a large corpus of chromatin accessibility data from hundreds of human biosamples. We used these models to generate an atlas of tens of thousands of synthetic enhancers, targeting hundreds of cell lines, tissues, and differentiation states, aiming to maximize accessibility in target samples and minimize it in all off-target ones. Experimental testing of thousands of designs in a representative subset of ten human cell types and in mouse retina demonstrated their function as specific enhancers, not only in the case of one-versus-all objectives but also when targeting two or three cell types. An explainable AI analysis, enabled by our large-scale enhancer measurements, allowed us to identify similarities and differences between the sequence grammar underlying accessibility and enhancer activity. Our results show that model-guided design of enhancers can help us decipher the cis-regulatory code governing cell type specificity and generate novel tools for selective targeting of human cell states.
Full author list & citation
Sebastian M. Castillo-Hair, Christopher H. Yin, Leah VandenBosch, Timothy J. Cherry, Wouter Meuleman, Georg Seelig. Programming human cell type-specific gene expression via an atlas of AI-designed enhancers. 2025-09-30. https://doi.org/10.1101/2025.09.30.679565
Experiments 11
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The shared 145-nt enhancer library was transfected into human SJCRH30/Rh30 cells to measure cell-type-specific reporter activity. Reporter mRNA counts from two released replicates were compared with plasmid-DNA library counts and summarized as DESeq2 log2(RNA/DNA) activity estimates.
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The shared 145-nt enhancer library was transfected into human 786-O cells to measure cell-type-specific reporter activity. Reporter mRNA counts from two released replicates were compared with plasmid-DNA library counts and summarized as DESeq2 log2(RNA/DNA) activity estimates.
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The shared 145-nt enhancer library was transfected into human WERI-Rb-1 cells to measure cell-type-specific reporter activity. Reporter mRNA counts from two released replicates were compared with plasmid-DNA library counts and summarized as DESeq2 log2(RNA/DNA) activity estimates.
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The shared 145-nt enhancer library was transfected into human GM12878 cells to measure cell-type-specific reporter activity. Reporter mRNA counts from two released replicates were compared with plasmid-DNA library counts and summarized as DESeq2 log2(RNA/DNA) activity estimates.
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The shared 145-nt enhancer library was transfected into postnatal day 0 (P0) mouse retina to test enhancer activity in tissue. Reporter mRNA counts were compared with plasmid-DNA library counts and released as a Retina log2(RNA/DNA) activity estimate.
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The shared 145-nt enhancer library was transfected into human HepG2 cells to measure cell-type-specific reporter activity. Reporter mRNA counts from two released replicates were compared with plasmid-DNA library counts and summarized as DESeq2 log2(RNA/DNA) activity estimates.
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The shared 145-nt enhancer library was transfected into human K-562 cells to measure cell-type-specific reporter activity. Reporter mRNA counts from two released replicates were compared with plasmid-DNA library counts and summarized as DESeq2 log2(RNA/DNA) activity estimates.
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The shared 145-nt enhancer library was transfected into human NT2-D1 cells to measure cell-type-specific reporter activity. Reporter mRNA counts from two released replicates were compared with plasmid-DNA library counts and summarized as DESeq2 log2(RNA/DNA) activity estimates.
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The shared 145-nt enhancer library was transfected into human SK-N-SH cells to measure cell-type-specific reporter activity. Reporter mRNA counts from two released replicates were compared with plasmid-DNA library counts and summarized as DESeq2 log2(RNA/DNA) activity estimates.
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The shared 145-nt enhancer library was transfected into human HeLa S3 cells to measure cell-type-specific reporter activity. Reporter mRNA counts from two released replicates were compared with plasmid-DNA library counts and summarized as DESeq2 log2(RNA/DNA) activity estimates.
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The shared 145-nt enhancer library was transfected into human MCF-7 cells to measure cell-type-specific reporter activity. Reporter mRNA counts from two released replicates were compared with plasmid-DNA library counts and summarized as DESeq2 log2(RNA/DNA) activity estimates.