YAP and TAZ couple osteoblast precursor mobilization to angiogenesis and mechanoregulated bone development
Collins, J. M.; Lang, A.; Parisi, C.; Moharrer, Y.; Nijsure, M. P.; Kim, J. H.; Szeto, G. L.; Qin, L.; Gottardi, R.; Dyment, N.; Nowlan, N.; Boerckel, J. D.
Show abstract
Endochondral ossification requires coordinated mobilization of osteoblast precursors with blood vessels. During adult bone homeostasis, vessel adjacent osteoblast precursors respond to and are maintained by mechanical stimuli; however, the mechanisms by which these cells mobilize and respond to mechanical cues during embryonic development are unknown. Previously, we found that deletion of the mechanoresponsive transcriptional regulators, YAP and TAZ, from Osterix-expressing osteoblast precursors and their progeny caused perinatal lethality. Here, we show that embryonic YAP/TAZ signaling couples vessel-associated osteoblast precursor mobilization to angiogenesis in developing long bones. Osterix-conditional YAP/TAZ deletion impaired endochondral ossification in the primary ossification center but not intramembranous osteogenesis in the bone collar. Single-cell RNA sequencing revealed YAP/TAZ regulation of the angiogenic chemokine, Cxcl12, which was expressed uniquely in vessel-associated osteoblast precursors. YAP/TAZ signaling spatially coupled osteoblast precursors to blood vessels and regulated vascular morphogenesis and vessel barrier function. Further, YAP/TAZ signaling regulated vascular loop morphogenesis at the chondro-osseous junction to control hypertrophic growth plate remodeling. In human cells, mesenchymal stromal cell co-culture promoted 3D vascular network formation, which was impaired by stromal cell YAP/TAZ depletion, but rescued by recombinant CXCL12 treatment. Lastly, YAP and TAZ mediated mechanotransduction for load-induced osteogenesis in embryonic bone.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Secondary ossification center induces and protects growth plate structure 96%
- Csf1 from marrow adipogenic precursors is required for osteoclast formation and hematopoiesis in bone 96%
- Hypertrophic Chondrocytes Serve as a Reservoir for Marrow Associated Skeletal Stem and Progenitor Cells, Osteoblasts, and Adipocytes During Skeletal Development 96%
Similar papers in this journal
- NGF-p75 signaling coordinates skeletal cell migration during bone repair 96%
- Single-cell analysis reveals distinct fibroblast plasticity during tenocyte regeneration in zebrafish 95%
- Gastrulation-stage gene expression in Nipbl+/- mouse embryos foreshadows the development of syndromic birth defects 95%
Similar papers in this journal
Similar papers in this journal
- Spatial Transcriptomics Reveals the Requirement of ADGRG6 in Maintaining Chondrocyte Homeostasis in Mouse Growth Plates 96%
- YAP and TAZ promote periosteal osteoblast precursor expansion and differentiation for fracture repair 96%
- Activation of the noncanonical inflammasome-GSDMD pathway triggers pyroptosis in bone marrow and promotes periosteal bone formation 95%
Similar papers in this journal
- Variants in the SOX9 transactivation middle domain induce axial skeleton dysplasia and scoliosis 95%
- Hindbrain neuropore tissue geometry determines asymmetric cell-mediated closure dynamics 94%
- Murine gut microbiota dysbiosis via enteric infection modulates the foreign body response to a distal biomaterial implant 94%
"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.