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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2021
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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) |
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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 |
work_keys_str_mv |
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