Spatiotemporal disorder in the axial skeleton development of the Mesp2-null mouse: A model of spondylocostal dysostosis and spondylothoracic dysostosis

被引:13
|
作者
Makino, Yuji [1 ,2 ,3 ]
Takahashi, Yu [4 ]
Tanabe, Rieko [5 ]
Tamamura, Yoshihiro [1 ,2 ]
Watanabe, Takashi [6 ]
Haraikawa, Mayu [5 ]
Hamagaki, Miwako [1 ,2 ]
Hata, Kenji [7 ]
Kanno, Jun [4 ]
Yoneda, Toshiyuki [7 ]
Saga, Yumiko
Goseki-Sone, Masae [5 ]
Kaneko, Kazuo [3 ]
Yamaguchi, Akira [1 ,2 ]
Iimura, Tadahiro [1 ,2 ]
机构
[1] Tokyo Med & Dent Univ, Grad Sch Med & Dent Sci, Sect Oral Pathol, Tokyo 1138549, Japan
[2] Tokyo Med & Dent Univ, Int Res Ctr Mol Sci Tooth & Bone Dis, Global Ctr Excellence GCOE Program, Tokyo 1138549, Japan
[3] Juntendo Univ, Grad Sch Med, Dept Orthoped Surg, Tokyo, Japan
[4] Natl Inst Hlth Sci, Cellular & Mol Toxicol Div, Tokyo, Japan
[5] Japan Womens Univ, Fac Human Sci & Design, Dept Food & Nutr, Tokyo, Japan
[6] Tokyo Med & Dent Univ, Grad Sch Med & Dent Sci, Sect Maxillofacial Surg, Tokyo 1138549, Japan
[7] Osaka Univ, Grad Sch Dent, Dept Mol & Cellular Biochem, Suita, Osaka 565, Japan
基金
日本学术振兴会;
关键词
Spondylocostal dysostosis; Spondylothoracic dysostosis; The segmentation clock; Skeletal development; Vertebrae; ABNORMAL VERTEBRAL SEGMENTATION; LUNATIC-FRINGE GENE; SOMITE SEGMENTATION; INDIAN HEDGEHOG; TGF-BETA; CHONDROCYTE DIFFERENTIATION; DYNAMIC EXPRESSION; NOTCH; NOTOCHORD; HES7;
D O I
10.1016/j.bone.2012.11.033
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Spondylocostal dysostosis (SCDO) is a genetic disorder characterized by severe malformation of the axial skeleton. Mesp2 encodes a basic helix-loop-helix type transcription factor that is required for somite formation. Its human homologue, Mesp2, is a gene affected in patients with SCDO and a related vertebral disorder, spondylothoracic dysostosis (STDO). This work investigated how the loss of Mesp2 affects axial skeleton development and causes the clinical features of SCDO and STDO. We first confirmed, by three-dimensional computed tomography scanning, that Mesp2-null mice exhibited mineralized tissue patterning resembling the radiological features of SCDO and STDO. Histological observations and in situ hybridization probing for extracellular matrix molecules demonstrated that the developing vertebral bodies in Mesp2-null mice were extensively fused with rare insertions of intervertebral tissue. Unexpectedly, the intervertebral tissues were mostly fused longitudinally in the vertebral column, instead of exhibiting extended formation, as was expected based on the caudalized properties of Mesp2-null somite derivatives. Furthermore, the differentiation of vertebral body chondrocytes in Mesp2-null mice was spatially disordered and largely delayed, with an increased cell proliferation rate. The quantitative three-dimensional immunofluorescence image analyses of phospho-Smad2 and -Smad1/5/8 revealed that these chondrogenic phenotypes were associated with spatially disordered inputs of TGF-beta and BMP signaling in the Mesp2-null chondrocytes, and also demonstrated an amorphous arrangement of cells with distinct properties. Furthermore, a significant delay in ossification in Mesp2-null vertebrae was observed by peripheral quantitative computed tomography. The current observations of the spatiotemporal disorder of vertebral organogenesis in the Mesp2-null mice provide further insight into the pathogenesis of SCDO and STDO, and the physiological development of the axial skeleton. (C) 2012 Elsevier Inc. All rights reserved.
引用
收藏
页码:248 / 258
页数:11
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