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颈部和肩部的神经嵴起源。

Neural crest origins of the neck and shoulder.

作者信息

Matsuoka Toshiyuki, Ahlberg Per E, Kessaris Nicoletta, Iannarelli Palma, Dennehy Ulla, Richardson William D, McMahon Andrew P, Koentges Georgy

机构信息

Wolfson Institute for Biomedical Research, University College London, Gower Street, London WC1E 6BT, UK.

出版信息

Nature. 2005 Jul 21;436(7049):347-55. doi: 10.1038/nature03837.

Abstract

The neck and shoulder region of vertebrates has undergone a complex evolutionary history. To identify its underlying mechanisms we map the destinations of embryonic neural crest and mesodermal stem cells using Cre-recombinase-mediated transgenesis. The single-cell resolution of this genetic labelling reveals cryptic cell boundaries traversing the seemingly homogeneous skeleton of the neck and shoulders. Within this assembly of bones and muscles we discern a precise code of connectivity that mesenchymal stem cells of both neural crest and mesodermal origin obey as they form muscle scaffolds. The neural crest anchors the head onto the anterior lining of the shoulder girdle, while a Hox-gene-controlled mesoderm links trunk muscles to the posterior neck and shoulder skeleton. The skeleton that we identify as neural crest-derived is specifically affected in human Klippel-Feil syndrome, Sprengel's deformity and Arnold-Chiari I/II malformation, providing insights into their likely aetiology. We identify genes involved in the cellular modularity of the neck and shoulder skeleton and propose a new method for determining skeletal homologies that is based on muscle attachments. This has allowed us to trace the whereabouts of the cleithrum, the major shoulder bone of extinct land vertebrate ancestors, which seems to survive as the scapular spine in living mammals.

摘要

脊椎动物的颈部和肩部区域经历了复杂的进化历程。为了确定其潜在机制,我们利用Cre重组酶介导的转基因技术绘制胚胎神经嵴和中胚层干细胞的去向。这种基因标记的单细胞分辨率揭示了穿越颈部和肩部看似均匀的骨骼的隐秘细胞边界。在这个骨骼和肌肉的组合中,我们识别出神经嵴和中胚层来源的间充质干细胞在形成肌肉支架时所遵循的精确连接代码。神经嵴将头部固定在肩带的前侧内衬上,而由Hox基因控制的中胚层则将躯干肌肉与后颈部和肩部骨骼相连。我们确定为神经嵴衍生的骨骼在人类克莱佩尔-费尔综合征、先天性高肩胛症和阿诺德-奇亚里I/II型畸形中受到特异性影响,这为它们可能的病因提供了见解。我们识别出参与颈部和肩部骨骼细胞模块化的基因,并提出了一种基于肌肉附着来确定骨骼同源性的新方法。这使我们能够追踪锁骨(已灭绝的陆地脊椎动物祖先的主要肩骨)的下落,它似乎在现存哺乳动物中作为肩胛冈留存下来。

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