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Pax2在小鼠内耳发育中的作用。

The role of Pax2 in mouse inner ear development.

作者信息

Burton Quianna, Cole Laura K, Mulheisen Michael, Chang Weise, Wu Doris K

机构信息

National Institute on Deafness and Other Communication Disorders, Bethesda, MD 20892, USA.

出版信息

Dev Biol. 2004 Aug 1;272(1):161-75. doi: 10.1016/j.ydbio.2004.04.024.

Abstract

The paired box transcription factor, Pax2, is important for cochlear development in the mouse inner ear. Two mutant alleles of Pax2, a knockout and a frameshift mutation (Pax21Neu), show either agenesis or severe malformation of the cochlea, respectively. In humans, mutations in the PAX2 gene cause renal coloboma syndrome that is characterized by kidney abnormalities, optic nerve colobomas and mild sensorineural deafness. To better understand the role of Pax2 in inner ear development, we examined the inner ear phenotype in the Pax2 knockout mice using paint-fill and gene expression analyses. We show that Pax2-/- ears often lack a distinct saccule, and the endolymphatic duct and common crus are invariably fused. However, a rudimentary cochlea is always present in all Pax2 knockout inner ears. Cochlear outgrowth in the mutants is arrested at an early stage due to apoptosis of cells that normally express Pax2 in the cochlear anlage. Lack of Pax2 affects tissue specification within the cochlear duct, particularly regions between the sensory tissue and the stria vascularis. Because the cochlear phenotypes observed in Pax2 mutants are more severe than those observed in mice lacking Otx1 and Otx2, we postulate that Pax2 plays a key role in regulating the differential growth within the cochlear duct and thus, its proper outgrowth and coiling.

摘要

配对盒转录因子Pax2对小鼠内耳的耳蜗发育至关重要。Pax2的两个突变等位基因,一个敲除突变和一个移码突变(Pax21Neu),分别表现为耳蜗发育不全或严重畸形。在人类中,PAX2基因突变会导致肾眼裂综合征,其特征为肾脏异常、视神经裂孔和轻度感音神经性耳聋。为了更好地理解Pax2在内耳发育中的作用,我们使用填充染色和基因表达分析方法,研究了Pax2基因敲除小鼠的内耳表型。我们发现,Pax2基因敲除小鼠的耳朵常常缺少明显的球囊,内淋巴管和总脚总是融合在一起。然而,在所有Pax2基因敲除小鼠的内耳中总是存在一个发育不全的耳蜗。由于耳蜗原基中正常表达Pax2的细胞发生凋亡,突变体中的耳蜗生长在早期就停止了。Pax2的缺失影响了耳蜗管内的组织分化,特别是感觉组织和血管纹之间的区域。因为在Pax2突变体中观察到的耳蜗表型比在缺乏Otx1和Otx2的小鼠中观察到的更严重,我们推测Pax2在调节耳蜗管内的差异生长以及因此其正常生长和卷曲中起关键作用。

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