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Interleukin-11 expressed in the polyp-enriched fibroblast subset is a potential therapeutic target in Peutz-Jeghers
Eva Domènech-Moreno1,2, Wei-Wen Lim3,4, Melissa G Montrose1,2
1HiLIFE-Helsinki Institute of Life Science, University of Helsinki, Helsinki, Finland.
Insights
Peutz-Jeghers syndrome (PJS) polyps are driven by specific fibroblasts. Targeting interleukin-11 (IL-11) reduced polyp formation, offering a potential new therapy for this genetic disorder.
Area of Science:
- Gastroenterology
- Oncology
- Genetics
Background:
- Peutz-Jeghers syndrome (PJS) involves early-onset gastrointestinal polyposis due to STK11 (LKB1) gene variants.
- Current PJS management relies on frequent surveillance due to the absence of prophylactic therapies.
- Stromal cells are implicated in PJS polyp formation, but specific cell types and interactions remain unclear.
Purpose of the Study:
- To identify specific cell types and molecular interactions driving polyp formation in Peutz-Jeghers syndrome.
- To characterize the role of fibroblasts in PJS pathogenesis.
- To explore potential therapeutic targets for PJS polyp management.
Main Methods:
- Single-cell RNA sequencing of PJS mouse model polyps.
- In vitro analysis of fibroblasts with STK11 loss.
- Targeted deletion of Stk11 in mouse models using Foxl1-Cre.
- Cell-cell communication analysis and cytokine neutralization (IL-11 antibody).
Main Results:
- A distinct polyp-enriched crypt top fibroblast (pCTF) cluster was identified, sharing a signature with PJS patient polyps and fibroblasts with STK11 loss.
- Targeted Stk11 deletion in fibroblasts promoted the pCTF signature and led to polyposis, exacerbated by inflammation.
- Interleukin-11 (IL-11) was identified as a key inducer of pCTF reprogramming and was essential for polyp development in PJS models.
Conclusions:
- Polyp-enriched crypt top fibroblasts (pCTFs) are a key cellular component in Peutz-Jeghers syndrome.
- Interleukin-11 (IL-11) plays a critical role in fibroblast reprogramming and PJS polyp development.
- IL-11 represents a promising therapeutic target for Peutz-Jeghers syndrome.
Abstract:
Peutz-Jeghers syndrome (PJS) is associated with early-onset gastrointestinal polyposis caused by hereditary inactivating pathogenic variants in the tumor suppressor gene STK11 (LKB1). Due to lack of prophylactic therapies, management of PJS polyps requires frequent surveillance. Interestingly, studies in mouse models have revealed that stromal cells drive the polyp formation, but detailed understanding of the cell types and interactions involved has been lacking. Using single-cell RNA sequencing of PJS mouse model polyps, we here identify a polyp-enriched crypt top fibroblast (pCTF) cluster characterized by a transcriptional signature also enriched in PJS patient polyps. The pCTF signature was also noted in primary fibroblasts in vitro following acute STK11 loss. Targeted deletion of Stk11 in crypt top fibroblasts using Foxl1-Cre led to upregulation of the pCTF signature genes and later to polyposis. pCTFs displayed similarity to inflammation-associated fibroblasts, and polyposis was exacerbated by inflammation. Cell-cell communication analysis identified interleukin 11 (IL-11) as a potential pCTF inducer, and consistent with this, IL-11 was required for fibroblast reprogramming toward pCTFs following STK11 loss. Importantly, a neutralizing IL-11 antibody efficiently reduced polyp formation in a PJS model indicating a key, targetable role for IL-11 in polyp development. Together the results characterize pCTFs as a PJS polyp-enriched fibroblast subset and identify IL-11 as a key mediator of fibroblast reprogramming and a potential therapeutic target in PJS. © 2025 The Pathological Society of Great Britain and Ireland.
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