Cargando…

The Haploinsufficient Hematopoietic Microenvironment Is Critical to the Pathological Fracture Repair in Murine Models of Neurofibromatosis Type 1

Germline mutations in the NF1 tumor suppressor gene cause neurofibromatosis type 1 (NF1), a complex genetic disorder with a high predisposition of numerous skeletal dysplasias including short stature, osteoporosis, kyphoscoliosis, and fracture non-union (pseudoarthrosis). We have developed murine mo...

Descripción completa

Detalles Bibliográficos
Autores principales: Wu, Xiaohua, Chen, Shi, He, Yongzheng, Rhodes, Steven D., Mohammad, Khalid S., Li, Xiaohong, Yang, Xianlin, Jiang, Li, Nalepa, Grzegorz, Snider, Paige, Robling, Alexander G., Clapp, D. Wade, Conway, Simon J., Guise, Theresa A., Yang, Feng-Chun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3182976/
https://www.ncbi.nlm.nih.gov/pubmed/21980365
http://dx.doi.org/10.1371/journal.pone.0024917
_version_ 1782212959099944960
author Wu, Xiaohua
Chen, Shi
He, Yongzheng
Rhodes, Steven D.
Mohammad, Khalid S.
Li, Xiaohong
Yang, Xianlin
Jiang, Li
Nalepa, Grzegorz
Snider, Paige
Robling, Alexander G.
Clapp, D. Wade
Conway, Simon J.
Guise, Theresa A.
Yang, Feng-Chun
author_facet Wu, Xiaohua
Chen, Shi
He, Yongzheng
Rhodes, Steven D.
Mohammad, Khalid S.
Li, Xiaohong
Yang, Xianlin
Jiang, Li
Nalepa, Grzegorz
Snider, Paige
Robling, Alexander G.
Clapp, D. Wade
Conway, Simon J.
Guise, Theresa A.
Yang, Feng-Chun
author_sort Wu, Xiaohua
collection PubMed
description Germline mutations in the NF1 tumor suppressor gene cause neurofibromatosis type 1 (NF1), a complex genetic disorder with a high predisposition of numerous skeletal dysplasias including short stature, osteoporosis, kyphoscoliosis, and fracture non-union (pseudoarthrosis). We have developed murine models that phenocopy many of the skeletal dysplasias observed in NF1 patients, including reduced bone mass and fracture non-union. We also show that the development of these skeletal manifestations requires an Nf1 haploinsufficient background in addition to nullizygous loss of Nf1 in mesenchymal stem/progenitor cells (MSCs) and/or their progenies. This is replicated in two animal models of NF1, PeriCre(+);Nf1(flox/−) and Col2.3Cre(+);Nf1(flox/−)mice. Adoptive transfer experiments demonstrate a critical role of the Nf1+/− marrow microenvironment in the impaired fracture healing in both models and adoptive transfer of WT bone marrow cells improves fracture healing in these mice. To our knowledge, this is the first demonstration of a non-cell autonomous mechanism in non-malignant NF1 manifestations. Collectively, these data provide evidence of a combinatory effect between nullizygous loss of Nf1 in osteoblast progenitors and haploinsufficiency in hematopoietic cells in the development of non-malignant NF1 manifestations.
format Online
Article
Text
id pubmed-3182976
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-31829762011-10-06 The Haploinsufficient Hematopoietic Microenvironment Is Critical to the Pathological Fracture Repair in Murine Models of Neurofibromatosis Type 1 Wu, Xiaohua Chen, Shi He, Yongzheng Rhodes, Steven D. Mohammad, Khalid S. Li, Xiaohong Yang, Xianlin Jiang, Li Nalepa, Grzegorz Snider, Paige Robling, Alexander G. Clapp, D. Wade Conway, Simon J. Guise, Theresa A. Yang, Feng-Chun PLoS One Research Article Germline mutations in the NF1 tumor suppressor gene cause neurofibromatosis type 1 (NF1), a complex genetic disorder with a high predisposition of numerous skeletal dysplasias including short stature, osteoporosis, kyphoscoliosis, and fracture non-union (pseudoarthrosis). We have developed murine models that phenocopy many of the skeletal dysplasias observed in NF1 patients, including reduced bone mass and fracture non-union. We also show that the development of these skeletal manifestations requires an Nf1 haploinsufficient background in addition to nullizygous loss of Nf1 in mesenchymal stem/progenitor cells (MSCs) and/or their progenies. This is replicated in two animal models of NF1, PeriCre(+);Nf1(flox/−) and Col2.3Cre(+);Nf1(flox/−)mice. Adoptive transfer experiments demonstrate a critical role of the Nf1+/− marrow microenvironment in the impaired fracture healing in both models and adoptive transfer of WT bone marrow cells improves fracture healing in these mice. To our knowledge, this is the first demonstration of a non-cell autonomous mechanism in non-malignant NF1 manifestations. Collectively, these data provide evidence of a combinatory effect between nullizygous loss of Nf1 in osteoblast progenitors and haploinsufficiency in hematopoietic cells in the development of non-malignant NF1 manifestations. Public Library of Science 2011-09-29 /pmc/articles/PMC3182976/ /pubmed/21980365 http://dx.doi.org/10.1371/journal.pone.0024917 Text en Wu et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Wu, Xiaohua
Chen, Shi
He, Yongzheng
Rhodes, Steven D.
Mohammad, Khalid S.
Li, Xiaohong
Yang, Xianlin
Jiang, Li
Nalepa, Grzegorz
Snider, Paige
Robling, Alexander G.
Clapp, D. Wade
Conway, Simon J.
Guise, Theresa A.
Yang, Feng-Chun
The Haploinsufficient Hematopoietic Microenvironment Is Critical to the Pathological Fracture Repair in Murine Models of Neurofibromatosis Type 1
title The Haploinsufficient Hematopoietic Microenvironment Is Critical to the Pathological Fracture Repair in Murine Models of Neurofibromatosis Type 1
title_full The Haploinsufficient Hematopoietic Microenvironment Is Critical to the Pathological Fracture Repair in Murine Models of Neurofibromatosis Type 1
title_fullStr The Haploinsufficient Hematopoietic Microenvironment Is Critical to the Pathological Fracture Repair in Murine Models of Neurofibromatosis Type 1
title_full_unstemmed The Haploinsufficient Hematopoietic Microenvironment Is Critical to the Pathological Fracture Repair in Murine Models of Neurofibromatosis Type 1
title_short The Haploinsufficient Hematopoietic Microenvironment Is Critical to the Pathological Fracture Repair in Murine Models of Neurofibromatosis Type 1
title_sort haploinsufficient hematopoietic microenvironment is critical to the pathological fracture repair in murine models of neurofibromatosis type 1
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3182976/
https://www.ncbi.nlm.nih.gov/pubmed/21980365
http://dx.doi.org/10.1371/journal.pone.0024917
work_keys_str_mv AT wuxiaohua thehaploinsufficienthematopoieticmicroenvironmentiscriticaltothepathologicalfracturerepairinmurinemodelsofneurofibromatosistype1
AT chenshi thehaploinsufficienthematopoieticmicroenvironmentiscriticaltothepathologicalfracturerepairinmurinemodelsofneurofibromatosistype1
AT heyongzheng thehaploinsufficienthematopoieticmicroenvironmentiscriticaltothepathologicalfracturerepairinmurinemodelsofneurofibromatosistype1
AT rhodesstevend thehaploinsufficienthematopoieticmicroenvironmentiscriticaltothepathologicalfracturerepairinmurinemodelsofneurofibromatosistype1
AT mohammadkhalids thehaploinsufficienthematopoieticmicroenvironmentiscriticaltothepathologicalfracturerepairinmurinemodelsofneurofibromatosistype1
AT lixiaohong thehaploinsufficienthematopoieticmicroenvironmentiscriticaltothepathologicalfracturerepairinmurinemodelsofneurofibromatosistype1
AT yangxianlin thehaploinsufficienthematopoieticmicroenvironmentiscriticaltothepathologicalfracturerepairinmurinemodelsofneurofibromatosistype1
AT jiangli thehaploinsufficienthematopoieticmicroenvironmentiscriticaltothepathologicalfracturerepairinmurinemodelsofneurofibromatosistype1
AT nalepagrzegorz thehaploinsufficienthematopoieticmicroenvironmentiscriticaltothepathologicalfracturerepairinmurinemodelsofneurofibromatosistype1
AT sniderpaige thehaploinsufficienthematopoieticmicroenvironmentiscriticaltothepathologicalfracturerepairinmurinemodelsofneurofibromatosistype1
AT roblingalexanderg thehaploinsufficienthematopoieticmicroenvironmentiscriticaltothepathologicalfracturerepairinmurinemodelsofneurofibromatosistype1
AT clappdwade thehaploinsufficienthematopoieticmicroenvironmentiscriticaltothepathologicalfracturerepairinmurinemodelsofneurofibromatosistype1
AT conwaysimonj thehaploinsufficienthematopoieticmicroenvironmentiscriticaltothepathologicalfracturerepairinmurinemodelsofneurofibromatosistype1
AT guisetheresaa thehaploinsufficienthematopoieticmicroenvironmentiscriticaltothepathologicalfracturerepairinmurinemodelsofneurofibromatosistype1
AT yangfengchun thehaploinsufficienthematopoieticmicroenvironmentiscriticaltothepathologicalfracturerepairinmurinemodelsofneurofibromatosistype1
AT wuxiaohua haploinsufficienthematopoieticmicroenvironmentiscriticaltothepathologicalfracturerepairinmurinemodelsofneurofibromatosistype1
AT chenshi haploinsufficienthematopoieticmicroenvironmentiscriticaltothepathologicalfracturerepairinmurinemodelsofneurofibromatosistype1
AT heyongzheng haploinsufficienthematopoieticmicroenvironmentiscriticaltothepathologicalfracturerepairinmurinemodelsofneurofibromatosistype1
AT rhodesstevend haploinsufficienthematopoieticmicroenvironmentiscriticaltothepathologicalfracturerepairinmurinemodelsofneurofibromatosistype1
AT mohammadkhalids haploinsufficienthematopoieticmicroenvironmentiscriticaltothepathologicalfracturerepairinmurinemodelsofneurofibromatosistype1
AT lixiaohong haploinsufficienthematopoieticmicroenvironmentiscriticaltothepathologicalfracturerepairinmurinemodelsofneurofibromatosistype1
AT yangxianlin haploinsufficienthematopoieticmicroenvironmentiscriticaltothepathologicalfracturerepairinmurinemodelsofneurofibromatosistype1
AT jiangli haploinsufficienthematopoieticmicroenvironmentiscriticaltothepathologicalfracturerepairinmurinemodelsofneurofibromatosistype1
AT nalepagrzegorz haploinsufficienthematopoieticmicroenvironmentiscriticaltothepathologicalfracturerepairinmurinemodelsofneurofibromatosistype1
AT sniderpaige haploinsufficienthematopoieticmicroenvironmentiscriticaltothepathologicalfracturerepairinmurinemodelsofneurofibromatosistype1
AT roblingalexanderg haploinsufficienthematopoieticmicroenvironmentiscriticaltothepathologicalfracturerepairinmurinemodelsofneurofibromatosistype1
AT clappdwade haploinsufficienthematopoieticmicroenvironmentiscriticaltothepathologicalfracturerepairinmurinemodelsofneurofibromatosistype1
AT conwaysimonj haploinsufficienthematopoieticmicroenvironmentiscriticaltothepathologicalfracturerepairinmurinemodelsofneurofibromatosistype1
AT guisetheresaa haploinsufficienthematopoieticmicroenvironmentiscriticaltothepathologicalfracturerepairinmurinemodelsofneurofibromatosistype1
AT yangfengchun haploinsufficienthematopoieticmicroenvironmentiscriticaltothepathologicalfracturerepairinmurinemodelsofneurofibromatosistype1