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Home › Dataset Library › An integrated cell purification and genomics strategy reveals multiple regulators of pancreas development.

Dataset: An integrated cell purification and genomics strategy reveals multiple regulators of pancreas development.

The regulatory logic underlying global transcriptional programs controlling development of visceral organs like the pancreas remains...

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The regulatory logic underlying global transcriptional programs controlling development of visceral organs like the pancreas remains undiscovered. Here, we profiled gene expression in 12 purified populations of fetal and adult pancreatic epithelial cells representing crucial progenitor cell subsets, and their endocrine or exocrine progeny. Using probabilistic models to decode the general programs organizing gene expression, we identified co-expressed gene modules in cell subsets that revealed patterns and processes governing progenitor cell development, lineage specification, and endocrine cell maturation. Module network analysis linked established regulators like Neurog3 to unrecognized roles in endocrine secretion and protein transport, and nominated multiple candidate regulators of pancreas development. Phenotyping mutant mice revealed that candidate regulatory genes encoding transcription factors, including Bcl11a, Etv1, Prdm16 and Runx1t1, are essential for pancreas development or glucose control. Our integrated approach provides a unique framework for identifying regulatory networks underlying pancreas development and diseases like diabetes mellitus. Gene expression analysis: 12 primary cell populations from wild-type pancreas and 1 cell type from a mutant background (E15 Ngn3-null cells) pancreas (in fetal and adult stage) were purified using a combination of cell surface markers and transgenic reporters. Total RNA was isolated from each cell type in at least biological triplicates, amplified and hybridized to Affymetrix Mouse 430 2.0 arrays.

Species:
mouse

Samples:
48

Source:
E-GEOD-54374

Updated:
Dec.12, 2014

Registered:
Nov.12, 2014


Factors: (via ArrayExpress)
Sample developmental stage cell population genotype
GSM131405 E11.5 Sox9 wild type
GSM131405 E11.5 Sox9 wild type
GSM131405 E11.5 Sox9 wild type
GSM131405 E11.5 Sox9 wild type
GSM1314055 E15.5 Progenitor wild type
GSM1314055 E15.5 Progenitor wild type
GSM1314055 E15.5 Progenitor wild type
GSM1314058 E15.5 Acinar wild type
GSM1314058 E15.5 Acinar wild type
GSM1314058 E15.5 Acinar wild type
GSM131406 E15.5 Endocrine Progenitor wild type
GSM131406 E15.5 Endocrine Progenitor wild type
GSM131406 E15.5 Endocrine Progenitor wild type
GSM1314064 E15.5 Neurog3-null cells Ngn3-null
GSM1314064 E15.5 Neurog3-null cells Ngn3-null
GSM1314066 E15.5 Neurog3-null cells Neurog3-null
GSM1314066 E15.5 Neurog3-null cells Neurog3-null
GSM1314068 E15.5 beta cell wild type
GSM1314068 E15.5 beta cell wild type
GSM1314068 E15.5 beta cell wild type
GSM1314068 E15.5 beta cell wild type
GSM1314072 E17.5 beta cell wild type
GSM1314072 E17.5 beta cell wild type
GSM1314072 E17.5 beta cell wild type
GSM1314075 P0 beta cell wild type
GSM1314075 P0 beta cell wild type
GSM1314075 P0 beta cell wild type
GSM1314078 P15 beta cell wild type
GSM1314078 P15 beta cell wild type
GSM1314078 P15 beta cell wild type
GSM1314078 P15 beta cell wild type
GSM1314082 8-12wk beta cell wild type
GSM1314082 8-12wk beta cell wild type
GSM1314082 8-12wk beta cell wild type
GSM1314082 8-12wk beta cell wild type
GSM1314086 P0 alpha cell wild type
GSM1314086 P0 alpha cell wild type
GSM1314086 P0 alpha cell wild type
GSM1314086 P0 alpha cell wild type
GSM1314090 8-12wk alpha cell wild type
GSM1314090 8-12wk alpha cell wild type
GSM1314090 8-12wk alpha cell wild type
GSM1314090 8-12wk alpha cell wild type
GSM1314090 8-12wk alpha cell wild type
GSM1314095 8-12wk Duct Cell wild type
GSM1314095 8-12wk Duct Cell wild type
GSM1314095 8-12wk Duct Cell wild type
GSM1314095 8-12wk Duct Cell wild type

Tags

  • cell
  • diabetes mellitus
  • endocrine cell
  • glucose
  • pancreas
  • protein
  • surface

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