Col11a1 Regulates Bone Microarchitecture during Embryonic Development
Collagen XI alpha 1 (Col11a1) is an extracellular matrix molecule required for embryonic development with a role in both nucleating the formation of fibrils and regulating the diameter of heterotypic fibrils during collagen fibrillar assembly. Although found in many different tissues throughout the...
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doaj-555dfce73fec4616ba65017cb1462d922020-11-24T22:25:05ZengMDPI AGJournal of Developmental Biology2221-37592015-12-013415817610.3390/jdb3040158jdb3040158Col11a1 Regulates Bone Microarchitecture during Embryonic DevelopmentAnthony Hafez0Ryan Squires1Amber Pedracini2Alark Joshi3Robert E. Seegmiller4Julia Thom Oxford5Biomolecular Research Center, Boise State University, 1910 University Drive, Boise, ID 83706-1511, USADepartment of Physiology and Developmental Biology, Brigham Young University, Provo, UT 84602, USABiomolecular Research Center, Boise State University, 1910 University Drive, Boise, ID 83706-1511, USABiomolecular Research Center, Boise State University, 1910 University Drive, Boise, ID 83706-1511, USADepartment of Physiology and Developmental Biology, Brigham Young University, Provo, UT 84602, USABiomolecular Research Center, Boise State University, 1910 University Drive, Boise, ID 83706-1511, USACollagen XI alpha 1 (Col11a1) is an extracellular matrix molecule required for embryonic development with a role in both nucleating the formation of fibrils and regulating the diameter of heterotypic fibrils during collagen fibrillar assembly. Although found in many different tissues throughout the vertebrate body, Col11a1 plays an essential role in endochondral ossification. To further understand the function of Col11a1 in the process of bone formation, we compared skeletal mineralization in wild-type (WT) mice and Col11a1-deficient mice using X-ray microtomography (micro-CT) and histology. Changes in trabecular bone microstructure were observed and are presented here. Additionally, changes to the periosteal bone collar of developing long bones were observed and resulted in an increase in thickness in the case of Col11a1-deficient mice compared to WT littermates. Vertebral bodies were incompletely formed in the absence of Col11a1. The data demonstrate that Col11a1 depletion results in alteration to newly-formed bone and is consistent with a role for Col11a1 in mineralization. These findings indicate that expression of Col11a1 in the growth plate and perichondrium is essential for trabecular bone and bone collar formation during endochondral ossification. The observed changes to mineralized tissues further define the function of Col11a1.http://www.mdpi.com/2221-3759/3/4/158Collagen XICol11a1mineralizationchondrodysplasiaX-ray microtomography |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Anthony Hafez Ryan Squires Amber Pedracini Alark Joshi Robert E. Seegmiller Julia Thom Oxford |
spellingShingle |
Anthony Hafez Ryan Squires Amber Pedracini Alark Joshi Robert E. Seegmiller Julia Thom Oxford Col11a1 Regulates Bone Microarchitecture during Embryonic Development Journal of Developmental Biology Collagen XI Col11a1 mineralization chondrodysplasia X-ray microtomography |
author_facet |
Anthony Hafez Ryan Squires Amber Pedracini Alark Joshi Robert E. Seegmiller Julia Thom Oxford |
author_sort |
Anthony Hafez |
title |
Col11a1 Regulates Bone Microarchitecture during Embryonic Development |
title_short |
Col11a1 Regulates Bone Microarchitecture during Embryonic Development |
title_full |
Col11a1 Regulates Bone Microarchitecture during Embryonic Development |
title_fullStr |
Col11a1 Regulates Bone Microarchitecture during Embryonic Development |
title_full_unstemmed |
Col11a1 Regulates Bone Microarchitecture during Embryonic Development |
title_sort |
col11a1 regulates bone microarchitecture during embryonic development |
publisher |
MDPI AG |
series |
Journal of Developmental Biology |
issn |
2221-3759 |
publishDate |
2015-12-01 |
description |
Collagen XI alpha 1 (Col11a1) is an extracellular matrix molecule required for embryonic development with a role in both nucleating the formation of fibrils and regulating the diameter of heterotypic fibrils during collagen fibrillar assembly. Although found in many different tissues throughout the vertebrate body, Col11a1 plays an essential role in endochondral ossification. To further understand the function of Col11a1 in the process of bone formation, we compared skeletal mineralization in wild-type (WT) mice and Col11a1-deficient mice using X-ray microtomography (micro-CT) and histology. Changes in trabecular bone microstructure were observed and are presented here. Additionally, changes to the periosteal bone collar of developing long bones were observed and resulted in an increase in thickness in the case of Col11a1-deficient mice compared to WT littermates. Vertebral bodies were incompletely formed in the absence of Col11a1. The data demonstrate that Col11a1 depletion results in alteration to newly-formed bone and is consistent with a role for Col11a1 in mineralization. These findings indicate that expression of Col11a1 in the growth plate and perichondrium is essential for trabecular bone and bone collar formation during endochondral ossification. The observed changes to mineralized tissues further define the function of Col11a1. |
topic |
Collagen XI Col11a1 mineralization chondrodysplasia X-ray microtomography |
url |
http://www.mdpi.com/2221-3759/3/4/158 |
work_keys_str_mv |
AT anthonyhafez col11a1regulatesbonemicroarchitectureduringembryonicdevelopment AT ryansquires col11a1regulatesbonemicroarchitectureduringembryonicdevelopment AT amberpedracini col11a1regulatesbonemicroarchitectureduringembryonicdevelopment AT alarkjoshi col11a1regulatesbonemicroarchitectureduringembryonicdevelopment AT roberteseegmiller col11a1regulatesbonemicroarchitectureduringembryonicdevelopment AT juliathomoxford col11a1regulatesbonemicroarchitectureduringembryonicdevelopment |
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