CRISPR Screening Uncovers a Long-Range Enhancer forONECUT1in Pancreatic Differentiation and Links a Diabetes Risk Variant

Author:

Kaplan Samuel Joseph,Wong Wilfred,Yan Jielin,Pulecio Julian,Cho Hyein S.ORCID,Li Qianzi,Zhao Jiahui,Leslie-Iyer Jayanti,Kazakov Jonathan,Murphy Dylan,Luo Renhe,Dey Kushal K.,Apostolou Effie,Leslie Christina S.,Huangfu DanweiORCID

Abstract

AbstractFunctional enhancer annotation is a valuable first step for understanding tissue-specific transcriptional regulation and prioritizing disease-associated non-coding variants for investigation. However, unbiased enhancer discovery in physiologically relevant contexts remains a major challenge. To discover regulatory elements pertinent to diabetes, we conducted a CRISPR interference screen in the human pluripotent stem cell (hPSC) pancreatic differentiation system. Among the enhancers uncovered, we focused on a long-range enhancer ∼664 kb from theONECUT1promoter, since coding mutations inONECUT1cause pancreatic hypoplasia and neonatal diabetes. Homozygous enhancer deletion in hPSCs was associated with a near-complete loss ofONECUT1gene expression and compromised pancreatic differentiation. This enhancer contains a confidently fine-mapped type 2 diabetes associated variant (rs528350911) which disrupts a GATA motif. Introduction of the risk variant into hPSCs revealed substantially reduced binding of key pancreatic transcription factors (GATA4, GATA6 and FOXA2) on the edited allele, accompanied by a slight reduction ofONECUT1transcription, supporting a causal role for this risk variant in metabolic disease. This work expands our knowledge about transcriptional regulation in pancreatic development through the characterization of a long-range enhancer and highlights the utility of enhancer discovery in disease-relevant settings for understanding monogenic and complex disease.

Publisher

Cold Spring Harbor Laboratory

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