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DAN引导禽类内耳内淋巴囊和导管的生长。

DAN directs endolymphatic sac and duct outgrowth in the avian inner ear.

作者信息

Gerlach-Bank Lisa M, Cleveland Amanda R, Barald Kate F

机构信息

Department of Cell and Developmental Biology, Cell and Molecular Biology Program, University of Michigan, Ann Arbor, Michigan 48109, USA.

出版信息

Dev Dyn. 2004 Feb;229(2):219-30. doi: 10.1002/dvdy.10414.

Abstract

Bone morphogenetic proteins (BMPs) are expressed in the developing vertebrate inner ear and participate in inner ear axial patterning and the development of its sensory epithelium. BMP antagonists, such as noggin, chordin, gremlin, cerberus, and DAN (differential screening-selected gene aberrative in neuroblastoma) inhibit BMP activity and establish morphogenetic gradients during the patterning of many developing tissues and organs. In this study, the role of the BMP antagonist DAN in inner ear development was investigated. DAN-expressing cell pellets were implanted into the otocyst and the periotic mesenchyme to determine the effects of exogenous DAN on otic development. Similar to the effects on the inner ear seen after exposure of otocysts to the BMP4 antagonist noggin, semicircular canals were truncated or eliminated based upon the site of pellet implantation. Unique to the DAN implantations, however, were effects on the developing endolymphatic duct and sac. In DAN-treated inner ears, endolymphatic ducts and sacs were merged with the crus or grew into the superior semicircular canal. Both the canal and endolymphatic duct and sac effects were rescued by joint implantation of BMP4-expressing cells. Electroporation of DAN antisense morpholinos into the epithelium of stage 15-17 otocysts, blocking DAN protein synthesis, resulted in enlarged endolymphatic ducts and sacs as well as smaller semicircular canals in some cases. Taken together, these data suggest a role for DAN both in helping to regulate BMP activity spatially and temporally and in patterning and partitioning of the medial otic tissue between the endolymphatic duct/sac and medially derived inner ear structures.

摘要

骨形态发生蛋白(BMPs)在发育中的脊椎动物内耳中表达,并参与内耳轴向模式形成及其感觉上皮的发育。BMP拮抗剂,如头蛋白(noggin)、脊索蛋白(chordin)、Gremlin、Cerberus和DAN(神经母细胞瘤中差异筛选选择的基因异常),可抑制BMP活性,并在许多发育中的组织和器官模式形成过程中建立形态发生梯度。在本研究中,研究了BMP拮抗剂DAN在内耳发育中的作用。将表达DAN的细胞团植入耳囊和耳周间充质,以确定外源性DAN对耳发育的影响。与耳囊暴露于BMP4拮抗剂头蛋白后对内耳的影响相似,根据细胞团植入部位,半规管会被截断或消失。然而,DAN植入特有的影响是对发育中的内淋巴管和内淋巴囊的影响。在经DAN处理的内耳中,内淋巴管和内淋巴囊与壶腹融合或长入上半规管。通过联合植入表达BMP4的细胞,可挽救半规管以及内淋巴管和内淋巴囊的影响。将DAN反义吗啉代寡核苷酸电穿孔到15-17期耳囊的上皮中,阻断DAN蛋白合成,在某些情况下会导致内淋巴管和内淋巴囊增大以及半规管变小。综上所述,这些数据表明DAN在时空上帮助调节BMP活性以及在内耳内侧组织在内淋巴管/囊和内侧衍生的内耳结构之间的模式形成和划分中发挥作用。

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