Targeted transcriptome analysis of isolated intestinal epithelial cells from mice with constitutive Ptpn2-deficiency
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PTPN2 Is a Critical Regulator of Ileal Paneth Cell Viability and Function in Mice.
Abstract
<h4>Background & aims</h4>Loss-of-function variants in the PTPN2 gene are associated with increased risk of inflammatory bowel disease. We recently showed that Ptpn2 is critical for intestinal epithelial cell (IEC) barrier maintenance, IEC-macrophage communication, and modulation of the gut microbiome in mice, restricting expansion of a small intestinal pathobiont associated with inflammatory bowel disease. Here, we aimed to identify how Ptpn2 loss affects ileal IEC subtypes and their function in vivo.<h4>Methods</h4>Constitutive Ptpn2 wild-type, heterozygous, and knockout (KO) mice, as well as mice with inducible deletion of Ptpn2 in IECs, were used in the study. Investigation was performed using imaging techniques, flow cytometry, enteroid culture, and analysis of gene and protein levels of IEC markers.<h4>Results</h4>Partial transcriptome analysis showed that expression of Paneth cell-associated antimicrobial peptides Lyz1, Pla2g2a, and Defa6 was down-regulated markedly in Ptpn2-KO mice compared with wild-type and heterozygous. In parallel, Paneth cell numbers were reduced, their endoplasmic reticulum architecture was disrupted, and the endoplasmic reticulum stress protein, C/EBP-homologous protein (CHOP), was increased in Ptpn2-KO mice. Despite reduced Paneth cell number, flow cytometry showed increased expression of the Paneth cell-stimulatory cytokines interleukin 22 and interferon γ<sup>+</sup> in CD4<sup>+</sup> T cells isolated from Ptpn2-KO ileum. Key findings in constitutive Ptpn2-KO mice were confirmed in epithelium-specific Ptpn2<sup>ΔIEC</sup> mice, which also showed impaired lysozyme protein levels in Paneth cells compared with Ptpn2<sup>fl/fl</sup> control mice.<h4>Conclusions</h4>Constitutive Ptpn2 deficiency affects Paneth cell viability and compromises Paneth cell-specific antimicrobial peptide production. The observed effects may contribute to the increased susceptibility to intestinal infection and dysbiosis in these mice.
doi:10.1016/j.jcmgh.2023.03.009 ↗ PMID 37030630 ↗ PMC10213106 ↗
Study facts
- Organism
- —
- Platform
- nCounter SPRINT Profiler (NanoString Technologies)
- Age group
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- Disease groups
- —
- Anatomical sites
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Data availability
Specific data assets have not been resolved from the source yet — see the source repository below for the full file listing.
Strengths & limitations for reuse
Strengths
- Sample counts are documented
Limitations
- Not documented: raw reads are advertised
- Not documented: feature/otu tables are advertised
- Not documented: taxonomic tables are advertised
- Not documented: participant counts are documented
Extraction evidence & provenance
Each extracted field is shown with the source excerpt and location used to resolve it.
Assay
| Field | Value | Evidence |
|---|---|---|
assay.platform |
nCounter SPRINT Profiler (NanoString Technologies) |
processed by the nCounter SPRINT Profiler (NanoString Technologies) Section |
Data_Assets
| Field | Value | Evidence |
|---|---|---|
data_assets.open_access |
True |
Partial Transcriptome dataset is available in the NCBI database GEO accession number: GSE181914. Section |
Specimens
| Field | Value | Evidence |
|---|---|---|
specimens.body_site |
ileum |
we isolated ileal IECs from Ptpn2-WT, -HET, and -KO mice Section |
specimens.number_of_samples |
12 computed |
WT = 3, HET = 4, KO = 5. Section |