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Series GSE269251 Query DataSets for GSE269251
Status Public on Jun 06, 2024
Title Ehmt2 Inactivation in Pancreatic Epithelial Cells Shapes the Transcriptional Landscape and Inflammation Response of the Whole Pancreas [RNA-seq]
Organism Mus musculus
Experiment type Expression profiling by high throughput sequencing
Summary The Euchromatic Histone Methyl Transferase Protein 2 (EHMT2), also known as G9a, deposits transcriptionally repressive chromatin marks that play pivotal roles in the maturation and homeostasis of multiple organs.Recently, we have shown that Ehmt2 inactivation in the mouse pancreas alters growth and immune gene expression networks, antagonizing Kras-mediated pancreatic cancer initiation and promotion. Here, we elucidate the essential role of Ehmt2 in maintaining a transcriptional landscape that protects organs from inflammation. Comparative RNA-seq studies between normal postnatal and young adult pancreatic tissue from Ehmt2 conditional knockout animals (Ehmt2 fl/fl ) targeted to the exocrine pancreatic epithelial cells (Pdx1-Cre and P48 Cre/+ ), reveal alterations in gene expression networks in the whole organ related to injury-inflammationrepair, suggesting an increased predisposition to damage. Thus, we induced an inflammation repair response in the Ehmt2 fl/fl pancreas and used a data science-based approach to integrate RNA-seq-derived pathways and networks, deconvolution digital cytology, and spatial transcriptomics. We also analyzed the tissue response to damage at the morphological, biochemical, and molecular pathology levels. The Ehmt2 fl/fl pancreas displays an enhanced injury-inflammation-repair response, offering insights into fundamental molecular and cellular mechanisms involved in this process. More importantly, these data show that conditional Ehmt2 inactivation in exocrine cells reprograms the local environment to recruit mesenchymal and immunological cells needed to mount an increased inflammatory response. Mechanistically, this response is an enhanced injury-inflammationrepair reaction with a small contribution of specific Ehmt2-regulated transcripts. Thus, this new knowledge extends the mechanisms underlying the role of the Ehmt2- mediated pathway in suppressing pancreatic cancer initiation and modulating inflammatory pancreatic diseases.
 
Overall design Pancreatic mRNA profiles of 22 mice with backgrounds of PDX1/P48 wild type (WT) and EHMT2 knockout (KO) mice treated with or without caerulein. Replicates vary from 2-4 samples per condition
 
Contributor(s) Lomberk G, Urrutia R, Pollin G, Mathison A
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Submission date Jun 06, 2024
Last update date Jun 06, 2024
Contact name Gwen Lomberk
E-mail(s) glomberk@mcw.edu
Phone 414-955-2440
Organization name Medical College of Wisconsin
Street address 8701 W Watertown Plank Rd, Milwaukee, WI 53226
City Milwaukee
State/province Wisconsin
ZIP/Postal code 53226
Country USA
 
Platforms (1)
GPL24247 Illumina NovaSeq 6000 (Mus musculus)
Samples (22)
GSM8310790 ID3999.PDXCre.Adult RNA
GSM8310791 ID4015.PDXCre.Adult RNA
GSM8310792 ID3951.G9aKOPDXCre.Adult RNA
Relations
BioProject PRJNA1120829

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Supplementary file Size Download File type/resource
GSE269251_DEAnalyses_PN_YA.xlsx 5.0 Mb (ftp)(http) XLSX
GSE269251_DEAnalyses_W_WO_Acute_Panc_PDX.xlsx 6.2 Mb (ftp)(http) XLSX
GSE269251_DEAnalyses_acute_panc_PDX_and_P48.xlsx 6.4 Mb (ftp)(http) XLSX
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Raw data are available in SRA

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