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  • Interactions of signaling p... Interactions of signaling proteins, growth factors and other proteins with heparan sulfate: mechanisms and mysteries
    Billings, Paul C.; Pacifici, Maurizio Connective tissue research, 01/2015, Volume: 56, Issue: 4
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    Heparan sulfate (HS) is a component of cell surface and matrix-associated proteoglycans (HSPGs) that, collectively, play crucial roles in many physiologic processes including cell differentiation, ...
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  • Domains with highest hepara... Domains with highest heparan sulfate–binding affinity reside at opposite ends in BMP2/4 versus BMP5/6/7: Implications for function
    Billings, Paul C.; Yang, Evan; Mundy, Christina ... The Journal of biological chemistry, 09/2018, Volume: 293, Issue: 37
    Journal Article
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    Signaling proteins, including bone morphogenetic proteins (BMPs), specifically interact with heparan sulfate (HS). These interactions regulate protein distribution and function and are largely ...
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  • Identification and characte... Identification and characterization of a novel heparan sulfate-binding domain in Activin A longest variants and implications for function
    Yang, Evan; Mundy, Christina; Rappaport, Eric F ... PloS one, 09/2019, Volume: 14, Issue: 9
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    Open access

    Activins regulate numerous processes including inflammation and are synthesized as precursors consisting of a long N-terminal pro-region and a mature protein. Genomic human databases currently list ...
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  • Perichondrium phenotype and... Perichondrium phenotype and border function are regulated by Ext1 and heparan sulfate in developing long bones: A mechanism likely deranged in Hereditary Multiple Exostoses
    Huegel, Julianne; Mundy, Christina; Sgariglia, Federica ... Developmental biology, 05/2013, Volume: 377, Issue: 1
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    During limb skeletogenesis the cartilaginous long bone anlagen and their growth plates become delimited by perichondrium with which they interact functionally. Yet, little is known about how, despite ...
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  • Unsuspected osteochondroma-... Unsuspected osteochondroma-like outgrowths in the cranial base of Hereditary Multiple Exostoses patients and modeling and treatment with a BMP antagonist in mice
    Sinha, Sayantani; Mundy, Christina; Bechtold, Till ... PLoS genetics, 04/2017, Volume: 13, Issue: 4
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    Hereditary Multiple Exostoses (HME) is a rare pediatric disorder caused by loss-of-function mutations in the genes encoding the heparan sulfate (HS)-synthesizing enzymes EXT1 or EXT2. HME is ...
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  • Human and mouse activin gen... Human and mouse activin genes: Divergent expression of activin A protein variants and identification of a novel heparan sulfate-binding domain in activin B
    Billings, Paul C; Bizzaro, Candice; Yang, Evan ... PloS one, 02/2020, Volume: 15, Issue: 2
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    Activins are members of the transforming growth factor-β (TGF-β) superfamily of signaling proteins and were originally identified as components of follicular fluid. The proteins are now known to play ...
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  • The Roles of Indian Hedgeho... The Roles of Indian Hedgehog Signaling in TMJ Formation
    Bechtold, Till E; Kurio, Naito; Nah, Hyun-Duck ... International journal of molecular sciences, 12/2019, Volume: 20, Issue: 24
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    The temporomandibular joint (TMJ) is an intricate structure composed of the mandibular condyle, articular disc, and glenoid fossa in the temporal bone. Apical condylar cartilage is classified as a ...
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  • Heparan sulfate antagonism ... Heparan sulfate antagonism alters bone morphogenetic protein signaling and receptor dynamics, suggesting a mechanism in hereditary multiple exostoses
    Mundy, Christina; Yang, Evan; Takano, Hajime ... The Journal of biological chemistry, 05/2018, Volume: 293, Issue: 20
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    Hereditary multiple exostoses (HME) is a pediatric disorder caused by heparan sulfate (HS) deficiency and is characterized by growth plate–associated osteochondromas. Previously, we found that ...
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  • Roles of Ihh signaling in c... Roles of Ihh signaling in chondroprogenitor function in postnatal condylar cartilage
    Kurio, Naito; Saunders, Cheri; Bechtold, Till E. ... Matrix biology, 04/2018, Volume: 67
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    Condylar articular cartilage in mouse temporomandibular joint develops from progenitor cells near the articulating surface that proliferate, undergo chondrogenesis and mature into hypertrophic ...
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  • Heterozygous inactivation o... Heterozygous inactivation of Gnas in adipose‐derived mesenchymal progenitor cells enhances osteoblast differentiation and promotes heterotopic ossification
    Pignolo, Robert J; Xu, Meiqi; Russell, Elizabeth ... Journal of bone and mineral research, November 2011, Volume: 26, Issue: 11
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    Human genetic disorders sharing the common feature of subcutaneous heterotopic ossification (HO) are caused by heterozygous inactivating mutations in GNAS, a gene encoding multiple transcripts ...
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