Control of osteocyte dendrite formation by Sp7 and its target gene osteocrin

The molecular circuitry that drives dendrite formation during osteocytogenesis remains poorly understood. Here the authors show that deletion of Sp7, a gene linked to rare and common skeletal disease, in mature osteoblasts and osteocytes causes severe defects in osteocyte dendrites.

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Autores principales: Jialiang S. Wang, Tushar Kamath, Courtney M. Mazur, Fatemeh Mirzamohammadi, Daniel Rotter, Hironori Hojo, Christian D. Castro, Nicha Tokavanich, Rushi Patel, Nicolas Govea, Tetsuya Enishi, Yunshu Wu, Janaina da Silva Martins, Michael Bruce, Daniel J. Brooks, Mary L. Bouxsein, Danielle Tokarz, Charles P. Lin, Abdul Abdul, Evan Z. Macosko, Melissa Fiscaletti, Craig F. Munns, Pearl Ryder, Maria Kost-Alimova, Patrick Byrne, Beth Cimini, Makoto Fujiwara, Henry M. Kronenberg, Marc N. Wein
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/cd91057df8104b6bb42af0b42b4a9105
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spelling oai:doaj.org-article:cd91057df8104b6bb42af0b42b4a91052021-11-08T11:08:24ZControl of osteocyte dendrite formation by Sp7 and its target gene osteocrin10.1038/s41467-021-26571-72041-1723https://doaj.org/article/cd91057df8104b6bb42af0b42b4a91052021-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-26571-7https://doaj.org/toc/2041-1723The molecular circuitry that drives dendrite formation during osteocytogenesis remains poorly understood. Here the authors show that deletion of Sp7, a gene linked to rare and common skeletal disease, in mature osteoblasts and osteocytes causes severe defects in osteocyte dendrites.Jialiang S. WangTushar KamathCourtney M. MazurFatemeh MirzamohammadiDaniel RotterHironori HojoChristian D. CastroNicha TokavanichRushi PatelNicolas GoveaTetsuya EnishiYunshu WuJanaina da Silva MartinsMichael BruceDaniel J. BrooksMary L. BouxseinDanielle TokarzCharles P. LinAbdul AbdulEvan Z. MacoskoMelissa FiscalettiCraig F. MunnsPearl RyderMaria Kost-AlimovaPatrick ByrneBeth CiminiMakoto FujiwaraHenry M. KronenbergMarc N. WeinNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-20 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Jialiang S. Wang
Tushar Kamath
Courtney M. Mazur
Fatemeh Mirzamohammadi
Daniel Rotter
Hironori Hojo
Christian D. Castro
Nicha Tokavanich
Rushi Patel
Nicolas Govea
Tetsuya Enishi
Yunshu Wu
Janaina da Silva Martins
Michael Bruce
Daniel J. Brooks
Mary L. Bouxsein
Danielle Tokarz
Charles P. Lin
Abdul Abdul
Evan Z. Macosko
Melissa Fiscaletti
Craig F. Munns
Pearl Ryder
Maria Kost-Alimova
Patrick Byrne
Beth Cimini
Makoto Fujiwara
Henry M. Kronenberg
Marc N. Wein
Control of osteocyte dendrite formation by Sp7 and its target gene osteocrin
description The molecular circuitry that drives dendrite formation during osteocytogenesis remains poorly understood. Here the authors show that deletion of Sp7, a gene linked to rare and common skeletal disease, in mature osteoblasts and osteocytes causes severe defects in osteocyte dendrites.
format article
author Jialiang S. Wang
Tushar Kamath
Courtney M. Mazur
Fatemeh Mirzamohammadi
Daniel Rotter
Hironori Hojo
Christian D. Castro
Nicha Tokavanich
Rushi Patel
Nicolas Govea
Tetsuya Enishi
Yunshu Wu
Janaina da Silva Martins
Michael Bruce
Daniel J. Brooks
Mary L. Bouxsein
Danielle Tokarz
Charles P. Lin
Abdul Abdul
Evan Z. Macosko
Melissa Fiscaletti
Craig F. Munns
Pearl Ryder
Maria Kost-Alimova
Patrick Byrne
Beth Cimini
Makoto Fujiwara
Henry M. Kronenberg
Marc N. Wein
author_facet Jialiang S. Wang
Tushar Kamath
Courtney M. Mazur
Fatemeh Mirzamohammadi
Daniel Rotter
Hironori Hojo
Christian D. Castro
Nicha Tokavanich
Rushi Patel
Nicolas Govea
Tetsuya Enishi
Yunshu Wu
Janaina da Silva Martins
Michael Bruce
Daniel J. Brooks
Mary L. Bouxsein
Danielle Tokarz
Charles P. Lin
Abdul Abdul
Evan Z. Macosko
Melissa Fiscaletti
Craig F. Munns
Pearl Ryder
Maria Kost-Alimova
Patrick Byrne
Beth Cimini
Makoto Fujiwara
Henry M. Kronenberg
Marc N. Wein
author_sort Jialiang S. Wang
title Control of osteocyte dendrite formation by Sp7 and its target gene osteocrin
title_short Control of osteocyte dendrite formation by Sp7 and its target gene osteocrin
title_full Control of osteocyte dendrite formation by Sp7 and its target gene osteocrin
title_fullStr Control of osteocyte dendrite formation by Sp7 and its target gene osteocrin
title_full_unstemmed Control of osteocyte dendrite formation by Sp7 and its target gene osteocrin
title_sort control of osteocyte dendrite formation by sp7 and its target gene osteocrin
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/cd91057df8104b6bb42af0b42b4a9105
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