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Updated: Sep 22, 2025

Suppression of Pro-fibrotic Signaling Potentiates Factor-mediated Reprogramming of Mouse Embryonic Fibroblasts into Induced Cardiomyocytes
Published on: June 3, 2018
GLI1 activates pro-fibrotic pathways in myelofibrosis fibrocytes
Taghi Manshouri1, Ivo Veletic1, Ping Li1
1Department of Leukemia, The University of Texas MD Anderson Cancer Center, Houston, Texas, USA.
Abstract:
Bone marrow (BM) fibrosis was thought to be induced exclusively by mesenchymal stromal cells (MSCs). However, we and others found that neoplastic fibrocytes induce BM fibrosis in myelofibrosis (MF). Because glioma-associated oncogene-1 (GLI1), an effector of the Hedgehog pathway, plays a role in the induction of BM fibrosis, we wondered whether GLI1 affects fibrocyte-induced BM fibrosis in MF. Multiplexed fluorescence immunohistochemistry analysis of MF patients' BM detected high levels of GLI1 in MF fibrocytes compared to MSCs or normal fibrocytes. Immunostaining, RNA in situ hybridization, gene expression analysis, and western immunoblotting detected high levels of GLI1 and GLI1-induced matrix metalloproteases (MMP) 2 and 9 in MF patients BM-derived cultured fibrocytes. Similarly, MF patients' BM-derived GLI1+ fibrocytes were found in BMs and spleens of MF xenograft mice. GLI1 silencing reduced the levels of MMP2/9, phosphorylated SMAD2/3, and procollagen-I, and knockdown or inhibition of GLI1 decreased fibrocyte formation and induced apoptosis of both fibrocytes and fibrocyte progenitors. Because Janus kinase (JAK)2-induced STAT3 is constitutively activated in MF and because STAT3 induces GLI1 expression, we sought to determine whether STAT3 activates GLI1 in MF fibrocytes. Imaging analysis detected phosphotyrosine STAT3 in MF patients' BM fibrocytes, and transfection of fibrocytes with STAT3-siRNA or treatment with a JAK1/2 inhibitor ruxolitinib reduced GLI1 and MMP2/9 levels. Chromatin immunoprecipitation and a luciferase assay revealed that STAT3 induced the expression of the GLI1 gene in both MF BM fibrocytes and fibrocyte progenitors. Together, our data suggest that STAT3-activated GLI1 contributes to the induction of BM fibrosis in MF.
Insights
Neoplastic fibrocytes drive bone marrow fibrosis in myelofibrosis by activating GLI1. STAT3 signaling activates GLI1, contributing to this fibrotic process and offering potential therapeutic targets.
Area of Science:
- Hematology
- Oncology
- Molecular Biology
Background:
- Bone marrow (BM) fibrosis in myelofibrosis (MF) was previously attributed solely to mesenchymal stromal cells (MSCs).
- Recent findings indicate neoplastic fibrocytes also induce BM fibrosis in MF.
- The Hedgehog pathway effector, glioma-associated oncogene-1 (GLI1), is implicated in BM fibrosis induction.
Purpose of the Study:
- To investigate the role of GLI1 in fibrocyte-induced BM fibrosis in MF.
- To determine if STAT3 signaling activates GLI1 in MF fibrocytes.
Main Methods:
- Multiplexed fluorescence immunohistochemistry on MF patient BM.
- Analysis of GLI1 and matrix metalloproteases (MMP) 2 and 9 in MF fibrocytes.
- GLI1 silencing and JAK inhibitor (ruxolitinib) treatment in MF models.
- STAT3-siRNA transfection and chromatin immunoprecipitation assays.
Main Results:
- MF fibrocytes exhibit high GLI1 levels, unlike MSCs or normal fibrocytes.
- GLI1 knockdown reduced MMP2/9, procollagen-I, and induced fibrocyte apoptosis.
- STAT3 was detected in MF fibrocytes, and its inhibition reduced GLI1 and MMP2/9.
- STAT3 directly induced GLI1 gene expression in MF fibrocytes and progenitors.
Conclusions:
- STAT3-activated GLI1 significantly contributes to BM fibrosis induction in MF.
- Targeting the STAT3-GLI1 axis may offer a therapeutic strategy for MF.
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