Identification of Functionally Distinct Mx1+alpha SMA plus Periosteal Skeletal Stem Cells
CELL STEM CELL
Authors: Ortinau, Laura C.; Wang, Hamilton; Lei, Kevin; Deveza, Lorenzo; Jeong, Youngjae; Hara, Yannis; Grafe, Ingo; Rosenfeld, Scott B.; Lee, Dongjun; Lee, Brendan; Scadden, David T.; Park, Dongsu
Abstract
The periosteum is critical for bone maintenance and healing. However, the in vivo identity and specific regulatory mechanisms of adult periosteum-resident skeletal stem cells are unknown. Here, we report animal models that selectively and durably label postnatal Mx1+alpha SMA+ periosteal stem cells (P-SSCs) and establish that P-SSCs are a long-term repopulating, functionally distinct SSC subset responsible for lifelong generation of periosteal osteoblasts. P-SSCs rapidly migrate toward an injury site, supply osteoblasts and chondrocytes, and recover new periosteum. Notably, P-SSCs specifically express CCL5 receptors, CCR3 and CCR5. Real-time intravital imaging revealed that the treatment with CCL5 induces P-SSC migration in vivo and bone healing, while CCL5/CCR5 deletion, CCR5 inhibition, or local P-SSC ablation reduces osteoblast number and delays bone healing. Human periosteal cells express CCR5 and undergo CCL5-mediated migration. Thus, the adult periosteum maintains genetically distinct SSC subsets with a CCL5-dependent migratory mechanism required for bone maintenance and injury repair.
Common genetic susceptibility loci link PFAPA syndrome, Behcet's disease, and recurrent aphthous stomatitis
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
Authors: Manthiram, Kalpana; Preite, Silvia; Dedeoglu, Fatma; Demir, Selcan; Ozen, Seza; Edwards, Kathryn M.; Lapidus, Sivia; Katz, Alexander E.; Feder, Henry M., Jr.; Lawton, Maranda; Licameli, Greg R.; Wright, Peter F.; Le, Julie; Barron, Karyl S.; Ombrello, Amanda K.; Barham, Beverly; Romeo, Tina; Jones, Anne; Srinivasalu, Hemalatha; Mudd, Pamela A.; DeBiasi, Roberta L.; Gul, Ahmet; Marshall, Gary S.; Jones, Olcay Y.; Chandrasekharappa, Settara C.; Stepanovskiy, Yuriy; Ferguson, Polly J.; Schwartzberg, Pamela L.; Remmers, Elaine F.; Kastner, Daniel L.
Abstract
Periodic fever, aphthous stomatitis, pharyngitis, and cervical adenitis (PFAPA) syndrome is the most common periodic fever syndrome in children. The disease appears to cluster in families, but the patho- genesis is unknown. We queried two European-American cohorts and one Turkish cohort (total n = 231) of individuals with PFAPA for common variants previously associated with two other oropharyngeal ulcerative disorders, Behcet's disease and recurrent aphthous sto- matitis. In a metaanalysis, we found that a variant upstream of IL12A (rs17753641) is strongly associated with PFAPA (OR 2.13, P = 6 x 10(-9)). We demonstrated that monocytes from individuals who are heterozygous or homozygous for this risk allele produce sig- nificantly higher levels of IL-12p70 upon IFN-gamma and LPS stimulation than those from individuals without the risk allele. We also found that variants near STAT4 , IL10 , and CCR1-CCR3 were significant susceptibility loci for PFAPA, suggesting that the pathogenesis of PFAPA involves abnormal antigen-presenting cell function and T cell activity and polarization, thereby implicating both innate and adaptive immune responses at the oropharyngeal mucosa. Our results illustrate genetic similarities among recurrent aphthous stomatitis, PFAPA, and Behcet's disease, placing these disorders on a common spectrum, with recurrent aphthous stomatitis on the mild end, Behcet's disease on the severe end, and PFAPA intermediate. We propose naming these disorders Behcet's spectrum disorders to highlight their relationship. HLA alleles may be factors that influence phenotypes along this spectrum as we found new class I and II HLA associations for PFAPA distinct from Behcet's disease and recurrent aphthous stomatitis.