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外胚层发育不全蛋白-A基因的突变导致小鼠出现骨骼缺陷。

Mutation of the ectodysplasin-A gene results in bone defects in mice.

作者信息

Hill N L, Laib A, Duncan M K

机构信息

Department of Biological Sciences, The University of Delaware, Newark, DE 19716, USA.

出版信息

J Comp Pathol. 2002 Feb-Apr;126(2-3):220-5. doi: 10.1053/jcpa.2001.0531.

Abstract

Anhidrotic ectodermal dysplasia (EDA) is an X-linked, recessive genetic disease characterized by dysfunctional sweat glands, poorly developed teeth, and premature balding in human beings. This disorder results from mutations in the gene for ectodysplasin-A, a type II transmembrane protein with tumour necrosis factor-alpha domains. An animal model of EDA, the Tabby mouse, also has mutations in the ectodysplasin-A gene and defects similar to those of human beings with EDA. In addition to these defects, Tabby mice acquire deformities in the distal portion of their tails at 10-12 weeks of age. Whole-mount staining of the skeleton with Alizarin Red and Alcian Blue revealed that the tail defect resulted from vertebral fractures just distal to the epiphysis. Histological analysis demonstrated that the structure of both the epiphysis and the subepiphyseal zone of the tail vertebrae was dysplastic while the shaft of the diaphysis was relatively normal. The overall structure of the trabecular bone of these animals was examined through 3-dimensional microcomputed tomography of the tibia. This analysis indicated that Tabby mice had a mild increase in the interconnectivity of the intertwined trabecular bone network but that individual trabeculae were relatively normal. Since it has been determined recently that the ectodysplasin-A gene is expressed in the osteoblasts of developing human embryos, it appears likely that this gene plays a role in normal bone development.

摘要

无汗性外胚层发育不良(EDA)是一种X连锁隐性遗传病,其特征是人类汗腺功能失调、牙齿发育不良和过早脱发。这种疾病是由外胚层发育不良蛋白A基因的突变引起的,外胚层发育不良蛋白A是一种具有肿瘤坏死因子-α结构域的II型跨膜蛋白。EDA的动物模型——虎斑小鼠,外胚层发育不良蛋白A基因也有突变,且存在与患有EDA的人类相似的缺陷。除了这些缺陷外,虎斑小鼠在10 - 12周龄时尾巴远端会出现畸形。用茜素红和阿尔新蓝对骨骼进行整体染色显示,尾巴缺陷是由骨骺远端的椎骨骨折引起的。组织学分析表明,尾椎骨的骨骺和骨骺下区域的结构发育异常,而骨干相对正常。通过对胫骨进行三维显微计算机断层扫描,检查了这些动物小梁骨的整体结构。该分析表明,虎斑小鼠相互交织的小梁骨网络的连通性略有增加,但单个小梁相对正常。由于最近已确定外胚层发育不良蛋白A基因在发育中的人类胚胎的成骨细胞中表达,因此该基因似乎在正常骨骼发育中发挥作用。

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