Adult Hox gene expression promotes periosteal stem cell maintenance and mediates reprogramming in a regionally restricted manner
Leclerc, K.; Remark, L. H.; Ramsukh, M.; Josephson, A. M.; Morgani, S.; Palma, L.; Parente, P.; Lee, S.; Muinos Lopez, E.; Leucht, P.
Show abstract
Periosteal stem and progenitor cells are pivotal to the growth and lifelong turnover of bone and underpin its capacity to regenerate. Adjusting the potency of this cell population will therefore be critical to the successful generation and application of new bone repair therapies. Following their role in patterning the embryonic skeleton, Hox genes remain regionally expressed in mesenchymal stromal cell populations of the adult skeleton. Here we show that Hoxa10 is most expressed in the most uncommitted periosteal stem cell and that Hox maintains these skeletal stem cells in a multipotential, uncommitted state, thereby preventing their differentiation into bone. We demonstrate that Hoxa10 mediates the reprogramming of periosteal progenitors towards a stem cell state with greater self-renewal capacity and also establish that region-specific Hox genes mediate cell reprogramming in distinct anatomical regions, demonstrating the continued functional relevance of the embryonic Hox profile in adult stem cells. Together, our data describe a master regulator role of Hox in skeletal stem and progenitor cells and help provide insight into the development of cell-based therapies for treatment of at-risk bone fractures and other bone-related ailments.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Human skeletal muscle organoids model fetal myogenesis and sustain uncommitted PAX7 myogenic progenitors 95%
- O-GlcNAc glycosylation orchestrates fate decision and niche function of bone marrow stromal progenitors 95%
- Periosteal skeletal stem cells can migrate into the bone marrow and support hematopoiesis after injury 95%
Similar papers in this journal
- Rostrocaudal Patterning and Neural Crest Differentiation of Human Pre-Neural Spinal Cord Progenitors in vitro 95%
- Arp2/3 complex activity is necessary for mouse ESC differentiation, times formative pluripotency, and enables lineage specification 94%
- A Dual Color Pax7 and Myf5 In Vivo Reporter to Investigate Muscle Stem Cell Heterogeneity in Regeneration and Aging 94%
Similar papers in this journal
- Basigin Links Altered Skeletal Stem Cell Lineage Dynamics with Glucocorticoid-induced Bone Loss and Impaired Angiogenesis 94%
- Dynamic Runx1 chromatin boundaries affect gene expression in hematopoietic development 93%
- Temporal constraints on enhancer usage shape the regulation of limb gene transcription 93%
Similar papers in this journal
- Fibroblast diversification is an embryonic process dependent on muscle contraction 95%
- Heterogeneity of satellite cells implicates DELTA1/ NOTCH2 signaling in self-renewal 94%
- Global transcriptomic profiling of the bone marrow stromal microenvironment during postnatal development, aging and inflammation 93%
Similar papers in this journal
- Dynamic extrinsic pacing of the HOX clock in human axial progenitors controls motor neuron subtype specification 96%
- Extraocular muscle stem cells exhibit distinct cellular properties associated with non-muscle molecular signatures 96%
- A single cell transcriptional atlas of early synovial joint development 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.