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Citations to this article

Measles virus nucleocapsid protein increases osteoblast differentiation in Paget’s disease
Jumpei Teramachi, … , Noriyoshi Kurihara, G. David Roodman
Jumpei Teramachi, … , Noriyoshi Kurihara, G. David Roodman
Published February 15, 2016
Citation Information: J Clin Invest. 2016;126(3):1012-1022. https://doi.org/10.1172/JCI82012.
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Research Article Bone biology Article has an altmetric score of 2

Measles virus nucleocapsid protein increases osteoblast differentiation in Paget’s disease

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Abstract

Paget’s disease (PD) is characterized by focal and dramatic bone resorption and formation. Treatments that target osteoclasts (OCLs) block both pagetic bone resorption and formation; therefore, PD offers key insights into mechanisms that couple bone resorption and formation. Here, we evaluated OCLs from 3 patients with PD and determined that measles virus nucleocapsid protein (MVNP) was expressed in 70% of these OCLs. Moreover, transgenic mice with OCL-specific expression of MVNP (MVNP mice) developed PD-like bone lesions that required MVNP-dependent induction of high IL-6 expression levels in OCLs. In contrast, mice harboring a knockin of p62P394L (p62-KI mice), which is the most frequent PD-associated mutation, exhibited increased bone resorption, but not formation. Evaluation of OCLs from MVNP, p62-KI, and WT mice revealed increased IGF1 expression in MVNP-expressing OCLs that resulted from the high IL-6 expression levels in these cells. IL-6, in turn, increased the expression of coupling factors, specifically ephrinB2 on OCLs and EphB4 on osteoblasts (OBs). IGF1 enhanced ephrinB2 expression on OCLs and OB differentiation. Importantly, ephrinB2 and IGF1 levels were increased in MVNP-expressing OCLs from patients with PD and MVNP-transduced human OCLs compared with levels detected in controls. Further, anti-IGF1 or anti-IGF1R blocked Runx2 and osteocalcin upregulation in OBs cocultured with MVNP-expressing OCLs. These results suggest that in PD, MVNP upregulates IL-6 and IGF1 in OCLs to increase ephrinB2-EphB4 coupling and bone formation.

Authors

Jumpei Teramachi, Yuki Nagata, Khalid Mohammad, Yuji Inagaki, Yasuhisa Ohata, Theresa Guise, Laëtitia Michou, Jacques P. Brown, Jolene J. Windle, Noriyoshi Kurihara, G. David Roodman

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Total citations by year

Year: 2024 2023 2022 2021 2020 2019 2017 2016 Total
Citations: 2 3 2 1 4 4 3 1 20
Citation information
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Citations to this article (20)

Title and authors Publication Year
Osteocytes and Paget's Disease of Bone.
Tenshin H, Delgado-Calle J, Windle JJ, Roodman GD, Chirgwin JM, Kurihara N
Current Osteoporosis Reports 2024
Regulation of bone homeostasis: signaling pathways and therapeutic targets
Wu Z, Li W, Jiang K, Lin Z, Qian C, Wu M, Xia Y, Li N, Zhang H, Xiao H, Bai J, Geng D
MedComm 2024
Osteoclast-derived IGF1 suppresses osteocyte differentiation and stimulates development of Paget’s disease lesions
Kazuaki Miyagawa, Patrick L Mulcrone, Jesus Delgado-Calle, Jolene Windle, John Chirgwin, G. Roodman, Noriyoshi Kurihara
JCI Insight 2023
A mutation in the ZNF687 gene that is responsible for the severe form of Paget's disease of bone causes severely altered bone remodeling and promotes hepatocellular carcinoma onset in a knock-in mouse model.
Russo S, Scotto di Carlo F, Maurizi A, Fortunato G, Teti A, Licastro D, Settembre C, Mello T, Gianfrancesco F
Bone Research 2023
Optineurin Regulates Osteoblast Function in an Age-dependent Fashion in a Mouse Model of Paget’s Disease of Bone
Hu X, Foster BL, Zhao B, Tseng HC, Wu YC, Ko CC
Bone 2023
Perivascular Mesenchymal Stem/Stromal Cells, an Immune Privileged Niche for Viruses?
Lebeau G, Ah-Pine F, Daniel M, Bedoui Y, Vagner D, Frumence E, Gasque P
International journal of molecular sciences 2022
Update on the pathogenesis and genetics of Paget’s disease of bone
Gennari L, Rendina D, Merlotti D, Cavati G, Mingiano C, Cosso R, Materozzi M, Pirrotta F, Abate V, Calabrese M, Falchetti A
Frontiers in Cell and Developmental Biology 2022
Effects of GH/IGF axis on bone and cartilage
M Dixit, SB Poudel, S Yakar
Molecular and Cellular Endocrinology 2021
Osteoclast-derived IGF1 is required for pagetic lesion formation in vivo
Kazuaki Miyagawa, Yasuhisa Ohata, Jesus Delgado-Calle, Jumpei Teramachi, Hua Zhou, David W. Dempster, Mark A. Subler, Jolene J. Windle, John Chirgwin, G. David Roodman, Noriyoshi Kurihara
JCI Insight 2020
Increased S1P expression in osteoclasts enhances bone formation in an animal model of Paget's disease
Y Nagata, K Miyagawa, Y Ohata, DN Petrusca, GM Pagnotti, KS Mohammad, TA Guise, JJ Windle, GD Roodman, N Kurihara
Journal of Cellular Biochemistry 2020
Clinical phenotype of adult offspring carriers of the p.Pro392Leu mutation within the SQSTM1 gene in Paget's disease of bone
M Dessay, FJ Gervais, D Simonyan, A Samson, G Gleeton, E Gagnon, C Albert, JP Brown, L Michou
Bone Reports 2020
The Recombinant Protein EphB4-Fc Changes the Ti Particle-Mediated Imbalance of OPG/RANKL via EphrinB2/EphB4 Signaling Pathway and Inhibits the Release of Proinflammatory Factors In Vivo
YW Ge, K Feng, XL Liu, HF Chen, ZY Sun, CF Wang, ZQ Liu, HW Wang, JW Zhang, DG Yu, YQ Mao
Oxidative medicine and cellular longevity 2020
Paget’s Disease of Bone
L Gennari, D Rendina, A Falchetti, D Merlotti
Calcified Tissue International 2019
Diagnosis and Management of Paget's Disease of Bone in Adults: A Clinical Guideline: DIAGNOSIS AND MANAGEMENT OF PAGET'S DISEASE OF BONE
SH Ralston, L Corral-Gudino, C Cooper, RM Francis, WD Fraser, L Gennari, N Guañabens, MK Javaid, R Layfield, TW O'Neill, RG Russell, MD Stone, K Simpson, D Wilkinson, R Wills, MC Zillikens, SP Tuck
Journal of Bone and Mineral Research 2019
Global deletion of Optineurin results in altered type I IFN signaling and abnormal bone remodeling in a model of Paget’s disease
SW Wong, BW Huang, X Hu, EH Kim, JP Kolb, RJ Padilla, P Xue, L Wang, TH Oguin, PA Miguez, HC Tseng, CC Ko, J Martinez
Cell Death and Differentiation 2019
Aplidin (plitidepsin) is a novel anti-myeloma agent with potent anti-resorptive activity mediated by direct effects on osteoclasts
Delgado-Calle J, Kurihara N, Atkinson EG, Nelson J, Miyagawa K, Galmarini CM, Roodman GD, Bellido T
Oncotarget 2019
NFAM1 signaling enhances osteoclast formation and bone resorption activity in Paget's disease of bone
Y Sambandam, K Sundaram, T Saigusa, S Balasubramanian, SV Reddy
Bone 2017
A FKBP5 mutation is associated with Paget’s disease of bone and enhances osteoclastogenesis
B Lu, Y Jiao, Y Wang, J Dong, M Wei, B Cui, Y Sun, L Wang, B Zhang, Z Chen, Y Zhao
Experimental & molecular medicine 2017
Measles virus nucleocapsid protein modulates the Signal Regulatory Protein-β1 (SIRPβ1) to enhance osteoclast differentiation in Paget's disease of bone
K Sundaram, Y Sambandam, S Shanmugarajan, DS Rao, SV Reddy
Bone Reports 2017
Clinical and Genetic Advances in Paget’s Disease of Bone: a Review
N Alonso, I Calero-Paniagua, J Pino-Montes
Clinical Reviews in Bone and Mineral Metabolism 2016

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