Key Features
Enhance your research with our curated data sets and powerful platform features. Pluto Bio makes it simple to find and use the data you need.
Learn MoreStudies in vertebrates have outlined conserved molecular control of definitive endoderm (END) development. Yet, recent work also shows that key molecular aspects of human END regulation differ even from rodents. Differentiation of human pluripotent stem cells (hPSCs) to END offers a tractable system to study the molecular basis of normal and defective human-specific END development. Here, we interrogated dynamics in chromatin accessibility during differentiation of hPSCs to END, predicting DNA-binding proteins that may drive this cell fate transition. We then combined single-cell RNA-seq with parallel CRISPR-perturbations to comprehensively define the loss-of-function phenotype of those factors in END development. Following a few candidates, we revealed distinct impairments in the differentiation trajectories for mediators of TGF signaling and expose a role for the FOXA2 transcription factor in priming human END competence for human foregut and hepatic endoderm specification. Together, this single-cell functional genomics study provides high-resolution insight on human END development. SOURCE: Rene MaehrDiabetes Center of Excellence UMass Medical School
View on GEOView in PlutoEnhance your research with our curated data sets and powerful platform features. Pluto Bio makes it simple to find and use the data you need.
Learn MoreUse Pluto's intuitive interface to analyze and visualize data for this experiment. Pluto's platform is equipped with an API & SDKs, making it easy to integrate into your internal bioinformatics processes.
Read about post-pipeline analysisView quality control data and experiment metadata for this experiment.
Request imports from GEO or TCGA directly within Pluto Bio.
Chat with our Scientific Insights team