Haplodeficiency of the 9p21 Tumor Suppressor Locus Causes Myeloid Disorders Driven by the Bone Marrow Microenvironment.
Jue FengPei-Feng HsuEduardo EstevaRossella LabellaYueyang WangAlireza Khodadadi-JamayranJoseph Nicholas PucellaCynthia Z LiuArnaldo A ArbiniAristotelis TsirigosStavroula KousteniBoris ReizisPublished in: Blood (2023)
The chromosome 9p21 locus comprises several tumor suppressor genes including MTAP, CDKN2A and CDKN2B, and its homo- or heterozygous deletion is associated with reduced survival in multiple cancer types. We report that mice with germline monoallelic deletion or induced biallelic deletion of the 9p21-syntenic locus (9p21s) developed a fatal myelodysplastic syndrome/myeloproliferative neoplasm (MDS/MPN)-like disease associated with aberrant trabecular bone formation and/or fibrosis in the bone marrow (BM). Reciprocal BM transfers and conditional targeting of 9p21s suggested that the disease originates in the BM stroma. Single-cell analysis of 9p21s-deficient BM stroma revealed the expansion of chondrocyte and osteogenic precursors, reflected in increased osteogenic differentiation in vitro. It also showed reduced expression of factors maintaining hematopoietic stem/progenitor cells, including Cxcl12. Accordingly, 9p21s-deficient mice showed reduced levels of circulating Cxcl12 and concomitant upregulation of the pro-fibrotic chemokine Cxcl13 and osteogenesis- and fibrosis-related multifunctional glycoprotein Osteopontin (OPN)/Spp1. Our study highlights the potential of mutations in the BM microenvironment to drive MDS/MPN-like disease.
Keyphrases
- bone marrow
- mesenchymal stem cells
- single cell
- poor prognosis
- stem cells
- adipose tissue
- signaling pathway
- cancer therapy
- genome wide association study
- intellectual disability
- autism spectrum disorder
- dendritic cells
- high glucose
- systemic sclerosis
- early onset
- type diabetes
- drug delivery
- binding protein
- liver fibrosis
- metabolic syndrome
- human health
- squamous cell carcinoma
- high throughput
- anti inflammatory
- dna repair
- transcription factor
- papillary thyroid
- metal organic framework
- wild type