Cargando…

The nucleocytoplasmic shuttling protein CIZ reduces adult bone mass by inhibiting bone morphogenetic protein–induced bone formation

Osteoporosis is a major health problem; however, the mechanisms regulating adult bone mass are poorly understood. Cas-interacting zinc finger protein (CIZ) is a nucleocytoplasmic shuttling protein that localizes at cell adhesion plaques that form where osteoblasts attach to substrate. To investigate...

Descripción completa

Detalles Bibliográficos
Autores principales: Morinobu, Mikihiko, Nakamoto, Tetsuya, Hino, Kazunori, Tsuji, Kunikazu, Shen, Zhong-Jian, Nakashima, Kazuhisa, Nifuji, Akira, Yamamoto, Haruyasu, Hirai, Hisamaru, Noda, Masaki
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 2005
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2213105/
https://www.ncbi.nlm.nih.gov/pubmed/15781586
http://dx.doi.org/10.1084/jem.20041097
_version_ 1782148826399768576
author Morinobu, Mikihiko
Nakamoto, Tetsuya
Hino, Kazunori
Tsuji, Kunikazu
Shen, Zhong-Jian
Nakashima, Kazuhisa
Nifuji, Akira
Yamamoto, Haruyasu
Hirai, Hisamaru
Noda, Masaki
author_facet Morinobu, Mikihiko
Nakamoto, Tetsuya
Hino, Kazunori
Tsuji, Kunikazu
Shen, Zhong-Jian
Nakashima, Kazuhisa
Nifuji, Akira
Yamamoto, Haruyasu
Hirai, Hisamaru
Noda, Masaki
author_sort Morinobu, Mikihiko
collection PubMed
description Osteoporosis is a major health problem; however, the mechanisms regulating adult bone mass are poorly understood. Cas-interacting zinc finger protein (CIZ) is a nucleocytoplasmic shuttling protein that localizes at cell adhesion plaques that form where osteoblasts attach to substrate. To investigate the potential role of CIZ in regulating adult bone mass, we examined the bones in CIZ-deficient mice. Bone volume was increased and the rates of bone formation were increased in CIZ-deficient mice, whereas bone resorption was not altered. CIZ deficiency enhanced the levels of mRNA expression of genes encoding proteins related to osteoblastic phenotypes, such as alkaline phosphatase (ALP) as well as osterix mRNA expression in whole long bones. Bone marrow cells obtained from the femora of CIZ-deficient mice revealed higher ALP activity in culture and formed more mineralized nodules than wild-type cells. CIZ deficiency enhanced bone morphogenetic protein (BMP)–induced osteoblastic differentiation in bone marrow cells in cultures, indicating that BMP is the target of CIZ action. CIZ deficiency increased newly formed bone mass after femoral bone marrow ablation in vivo. Finally, BMP-2–induced bone formation on adult mouse calvariae in vivo was enhanced by CIZ deficiency. These results establish that CIZ suppresses the levels of adult bone mass through inhibition of BMP-induced activation of osteoblasts.
format Text
id pubmed-2213105
institution National Center for Biotechnology Information
language English
publishDate 2005
publisher The Rockefeller University Press
record_format MEDLINE/PubMed
spelling pubmed-22131052008-03-11 The nucleocytoplasmic shuttling protein CIZ reduces adult bone mass by inhibiting bone morphogenetic protein–induced bone formation Morinobu, Mikihiko Nakamoto, Tetsuya Hino, Kazunori Tsuji, Kunikazu Shen, Zhong-Jian Nakashima, Kazuhisa Nifuji, Akira Yamamoto, Haruyasu Hirai, Hisamaru Noda, Masaki J Exp Med Article Osteoporosis is a major health problem; however, the mechanisms regulating adult bone mass are poorly understood. Cas-interacting zinc finger protein (CIZ) is a nucleocytoplasmic shuttling protein that localizes at cell adhesion plaques that form where osteoblasts attach to substrate. To investigate the potential role of CIZ in regulating adult bone mass, we examined the bones in CIZ-deficient mice. Bone volume was increased and the rates of bone formation were increased in CIZ-deficient mice, whereas bone resorption was not altered. CIZ deficiency enhanced the levels of mRNA expression of genes encoding proteins related to osteoblastic phenotypes, such as alkaline phosphatase (ALP) as well as osterix mRNA expression in whole long bones. Bone marrow cells obtained from the femora of CIZ-deficient mice revealed higher ALP activity in culture and formed more mineralized nodules than wild-type cells. CIZ deficiency enhanced bone morphogenetic protein (BMP)–induced osteoblastic differentiation in bone marrow cells in cultures, indicating that BMP is the target of CIZ action. CIZ deficiency increased newly formed bone mass after femoral bone marrow ablation in vivo. Finally, BMP-2–induced bone formation on adult mouse calvariae in vivo was enhanced by CIZ deficiency. These results establish that CIZ suppresses the levels of adult bone mass through inhibition of BMP-induced activation of osteoblasts. The Rockefeller University Press 2005-03-21 /pmc/articles/PMC2213105/ /pubmed/15781586 http://dx.doi.org/10.1084/jem.20041097 Text en Copyright © 2005, The Rockefeller University Press This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Article
Morinobu, Mikihiko
Nakamoto, Tetsuya
Hino, Kazunori
Tsuji, Kunikazu
Shen, Zhong-Jian
Nakashima, Kazuhisa
Nifuji, Akira
Yamamoto, Haruyasu
Hirai, Hisamaru
Noda, Masaki
The nucleocytoplasmic shuttling protein CIZ reduces adult bone mass by inhibiting bone morphogenetic protein–induced bone formation
title The nucleocytoplasmic shuttling protein CIZ reduces adult bone mass by inhibiting bone morphogenetic protein–induced bone formation
title_full The nucleocytoplasmic shuttling protein CIZ reduces adult bone mass by inhibiting bone morphogenetic protein–induced bone formation
title_fullStr The nucleocytoplasmic shuttling protein CIZ reduces adult bone mass by inhibiting bone morphogenetic protein–induced bone formation
title_full_unstemmed The nucleocytoplasmic shuttling protein CIZ reduces adult bone mass by inhibiting bone morphogenetic protein–induced bone formation
title_short The nucleocytoplasmic shuttling protein CIZ reduces adult bone mass by inhibiting bone morphogenetic protein–induced bone formation
title_sort nucleocytoplasmic shuttling protein ciz reduces adult bone mass by inhibiting bone morphogenetic protein–induced bone formation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2213105/
https://www.ncbi.nlm.nih.gov/pubmed/15781586
http://dx.doi.org/10.1084/jem.20041097
work_keys_str_mv AT morinobumikihiko thenucleocytoplasmicshuttlingproteincizreducesadultbonemassbyinhibitingbonemorphogeneticproteininducedboneformation
AT nakamototetsuya thenucleocytoplasmicshuttlingproteincizreducesadultbonemassbyinhibitingbonemorphogeneticproteininducedboneformation
AT hinokazunori thenucleocytoplasmicshuttlingproteincizreducesadultbonemassbyinhibitingbonemorphogeneticproteininducedboneformation
AT tsujikunikazu thenucleocytoplasmicshuttlingproteincizreducesadultbonemassbyinhibitingbonemorphogeneticproteininducedboneformation
AT shenzhongjian thenucleocytoplasmicshuttlingproteincizreducesadultbonemassbyinhibitingbonemorphogeneticproteininducedboneformation
AT nakashimakazuhisa thenucleocytoplasmicshuttlingproteincizreducesadultbonemassbyinhibitingbonemorphogeneticproteininducedboneformation
AT nifujiakira thenucleocytoplasmicshuttlingproteincizreducesadultbonemassbyinhibitingbonemorphogeneticproteininducedboneformation
AT yamamotoharuyasu thenucleocytoplasmicshuttlingproteincizreducesadultbonemassbyinhibitingbonemorphogeneticproteininducedboneformation
AT hiraihisamaru thenucleocytoplasmicshuttlingproteincizreducesadultbonemassbyinhibitingbonemorphogeneticproteininducedboneformation
AT nodamasaki thenucleocytoplasmicshuttlingproteincizreducesadultbonemassbyinhibitingbonemorphogeneticproteininducedboneformation
AT morinobumikihiko nucleocytoplasmicshuttlingproteincizreducesadultbonemassbyinhibitingbonemorphogeneticproteininducedboneformation
AT nakamototetsuya nucleocytoplasmicshuttlingproteincizreducesadultbonemassbyinhibitingbonemorphogeneticproteininducedboneformation
AT hinokazunori nucleocytoplasmicshuttlingproteincizreducesadultbonemassbyinhibitingbonemorphogeneticproteininducedboneformation
AT tsujikunikazu nucleocytoplasmicshuttlingproteincizreducesadultbonemassbyinhibitingbonemorphogeneticproteininducedboneformation
AT shenzhongjian nucleocytoplasmicshuttlingproteincizreducesadultbonemassbyinhibitingbonemorphogeneticproteininducedboneformation
AT nakashimakazuhisa nucleocytoplasmicshuttlingproteincizreducesadultbonemassbyinhibitingbonemorphogeneticproteininducedboneformation
AT nifujiakira nucleocytoplasmicshuttlingproteincizreducesadultbonemassbyinhibitingbonemorphogeneticproteininducedboneformation
AT yamamotoharuyasu nucleocytoplasmicshuttlingproteincizreducesadultbonemassbyinhibitingbonemorphogeneticproteininducedboneformation
AT hiraihisamaru nucleocytoplasmicshuttlingproteincizreducesadultbonemassbyinhibitingbonemorphogeneticproteininducedboneformation
AT nodamasaki nucleocytoplasmicshuttlingproteincizreducesadultbonemassbyinhibitingbonemorphogeneticproteininducedboneformation